SlideShare une entreprise Scribd logo
1  sur  19
Télécharger pour lire hors ligne
Kriya Materials, general presentation
1
Kriya Materials, general presentation
2
Light management by nano materials
Optical coatings for managing light propagation in
“lighting”, “display” and other application areas
Kriya Materials, general presentation
Overview
• General introduction Kriya Materials
• Anti-Reflection coating
– Classical AR models
• Single layer
• Double layer
• Multi layer
– AR coating developed by Kriya Materials
• 1-pot AR (unique feature)
• Light coupling
– Light in-coupling for Solar
– Light out-coupling for LED/OLED/Display
3
Kriya Materials, general presentation
General introduction Kriya Materials
 Started in 2006 at Chemelot Campus, The Netherlands
 Develops and manufactures custom made functional coatings based
upon its own nano particles for various markets,
 Active in various fields following a set of global trends;
 Lighting; Led and oled; Improving energy efficiency
 Agro greenhouses; Chemical reduction, plant growth regulation
 Energy conservation; Building and cars, by climate control film
coatings
 Energy production solar; Functional coatings for solar panels,
improving efficiency levels
 Display materials; Functional coatings, wide range
4
Kriya Materials, general presentation
Anti-Reflection coating
Method for Anti-Reflection (AR);
“To lower the Fresnel reflection losses which are always present at any
interface separating different indices of reflection”.
• Classical AR models
– Single layer
– Double layer
– Multi layer
• AR coating developed by Kriya Materials
– 1-pot AR (unique feature)
5
Kriya Materials, general presentation
Classical AR models
Single layer
• Optimal RI of the coating layer is midway between that of the surrounding
medium n0 and the substrate n2 e.g. MgF2 (n = 1.37[2])
• Optimal layer thickness is one-quarter wavelength[1]
– Based on a single layer of low RI (n) material and thickness (d)
• Reduces reflection at a specific (targeted) wavelength (λ/4[1])
• Reflection at non-targeted wavelengths is never greater than the
reflection of the untreated substrate
• Drawback of this technique
– No suitable material with low enough RI and sufficient mechanical
hardness available
6
AR coating; n1, λ/4
Substrate; n2
Medium (air); n0
Kriya Materials, general presentation
Classical AR models
Double layer
• Based on two layers with contrasting refractive indexes
– Low RI layer e.g. MgF2 (n=1.37[2]) on high RI layer e.g. ZnS (n=2.37[3])
– Drawback of this technique
• Reflection at non-targeted wavelengths can be higher than the
reflection of the uncoated substrate
– Optimal layer thickness is one quarter wavelength for each separate
layer[1]
7
High RI coating; n2, λ/4
Substrate; n3
Medium (air); n0
Low RI coating; n1, λ/4
Kriya Materials, general presentation
Classical AR models
Multi layer
• Based on three or more layers of low, medium and high refractive indexes
– Stack for three layers is
• n1 low RI coating
• n2 high RI coating
• n3 medium RI coating
– Optimal layer thickness is; one quarter wavelength for n1, one half
wavelength for n2 and one quarter wavelength for n3[1]
• General rule of thumb, more layers = less reflection = higher production cost
8
Medium RI coating; n3, λ/4
Substrate; n4
High RI coating; n2, λ/2
Medium (air); n0
Low RI coating; n1, λ/4
Kriya Materials, general presentation
AR coating developed by Kriya Materials
• 1-pot AR coating (unique feature)
– Innovative solution to apply a single wet coating layer
– Production cost of a single layer AR with the effectiveness of a double
layer AR
9
Kriya Materials, general presentation
1-pot AR coating
• Deposition of a single wet coating layer
– Contains various special modified nanoparticle materials
• Nanoparticle materials are developed and produced at Kriya
Materials
• Applicable on various plastic substrates
– PET, PC and TAC have been tested so far
• Innovative solution to overcome high production cost
10
Kriya Materials, general presentation
11
1-pot AR coating
Reflection spectra of Kriya’s 1-pot AR coating on TAC and PC (both sides coated).
Data recorded with a Ocean Optics USB2000 detector
Thickness ≈150 nm.
Rmin = 4λ = 600 nm
Kriya Materials, general presentation
12
Light coupling
• Light in-coupling
– Promotion of light refraction towards an absorber
• Light out-coupling
– Promotion of light extraction from a light source
• Similar approach for in- and out-coupling
Kriya Materials, general presentation
13
Light in-coupling for Solar
• Promoting the light in-coupling for solar cels through a refractive index
matched textured resist
• Increasing the efficiency of CIGS solar cels
– Standard practice is to apply a textured resist (polymeric coating) e.g.
Moth eye structure[4]
– Additional efficiency gain by increasing the refractive index of the
textured resist[5]
In collaboration with TNO[5]
Kriya Materials, general presentation
14
Light in-coupling for Solar
• Textured resist
– Textured resist is produced through Nano Imprint Lithography (NIL)
– Decreases the reflection at the interface which increases the amount of
photons
– By matching the refractive index of the resist to that of the AZO layer,
reflection losses at the resist/AZO interface are minimalized
Schematic representation of a CIGS solar cell (a) without and (b) with textured resist[5]
Kriya Materials, general presentation
15
Light in-coupling for Solar
• Schematic representation of the reflection on a non-textured resist and
textured resist
Non-textured resist, x% reflected
Textured resist, x% reflected which is partially “re-used”.
Typical increase of
absorption is about 25%
through use of a
textured structure
Light propagation
“Normal”
Kriya Materials, general presentation
16
Light in-coupling for Solar
Reflection of AZO on glass (blue), AZO on glass coated with non-textured resist (green) and AZO on glass coated
with textured resist (red).[5]
Integral reflection 300-1100 nm
AZO on glass (blue) R=14.5%
AZO on glass non-textured resist (green) R=13.3%
AZO on glass textured resist (red) R=5.7%
Kriya Materials, general presentation
17
Light coupling
✔ Light in-coupling
– Promotion of light refraction towards an absorber
• Light out-coupling
– Promotion of light extraction from a light source
• Mechanism similar approach for in- and out-coupling
Kriya Materials, general presentation
18
Light out-coupling for LED/OLED/Displays
• Promoting the light out-coupling in various applications by refractive index
matching
(a) Escape cone of a LED without and with encapsulation[6]
(b) Light-extraction efficiency ratio for GaN and GaP as a function of the encapsulant refractive index[6]
KriyaRI
Kriya Materials, general presentation
19
References
[1] Nave, R. (2014) Anti-Reflection Coatings. Retrieved from: http://hyperphysics.phy-astr.gsu.edu/hbase/phyopt/antiref.html
[2] Optical constants of MgF2 (Magnesium fluoride), Li 1980. Retrieved from: http://refractiveindex.info
[3] Optical constants of ZnS (Zinc sulfide), Debenham 1984 - Cubic ZnS. Retrieved from: http://refractiveindex.info
[4] Al-Turk, S. (2011) Analytic optimization modeling of Anti-Reflection coatings for Solar Cells. Master’s thesis. MC Master University,
United Status of America.
[5] Burghoorn, M., Kniknie, B., van Deelen, J., Xu, M., Vroon, Z., van Ee, R., van de Belt, R., and Buskens, P. (2014) Improving the
efficiency of copper indium gallium (Di)selenide (CIGS) solar cells through integration of a moth-eye textured resist with a refractive
index similar to aluminium doped zinc oxide. AIP ADVANCES. 4 (127154), 127154-1 – 127154-7.
[6] Mont, F.W. et al. (2008) High refractive index TiO2 nanoparticle-loaded encapsulants for LED. J. Appl. Phys, 103 (083120), 083120-1
- 083120-6.

Contenu connexe

En vedette

Double Patterning
Double PatterningDouble Patterning
Double Patterning
Danny Luk
 
EBuitrago Vertically Stacked SiNW Sensor
EBuitrago Vertically Stacked SiNW SensorEBuitrago Vertically Stacked SiNW Sensor
EBuitrago Vertically Stacked SiNW Sensor
Elizabeth Buitrago, PhD
 
Semiconductor equipment industry report, 2009
Semiconductor equipment industry report, 2009Semiconductor equipment industry report, 2009
Semiconductor equipment industry report, 2009
168report
 
EUV Lithography Final
EUV Lithography FinalEUV Lithography Final
EUV Lithography Final
Ehud Ben Ari
 
Lect10_Analog Layout and Process Concern
Lect10_Analog Layout and Process ConcernLect10_Analog Layout and Process Concern
Lect10_Analog Layout and Process Concern
vein
 
Masked ion beam lithography
Masked ion beam lithographyMasked ion beam lithography
Masked ion beam lithography
Ramya Kannan
 
Plasma science and applications 2013
Plasma science and applications 2013Plasma science and applications 2013
Plasma science and applications 2013
Sergey Korenev
 

En vedette (20)

Plasma diagnostic in eruptive prominences from SDO/AIA observations at 304 Å
Plasma diagnostic in eruptive prominences from SDO/AIA observations at 304 ÅPlasma diagnostic in eruptive prominences from SDO/AIA observations at 304 Å
Plasma diagnostic in eruptive prominences from SDO/AIA observations at 304 Å
 
S5.2_Buitrago
S5.2_BuitragoS5.2_Buitrago
S5.2_Buitrago
 
Stellar and laboratory XUV/EUV line ratios in Fe XVIII and Fe XIX
Stellar and laboratory XUV/EUV line ratios in Fe XVIII and Fe XIXStellar and laboratory XUV/EUV line ratios in Fe XVIII and Fe XIX
Stellar and laboratory XUV/EUV line ratios in Fe XVIII and Fe XIX
 
Double Patterning
Double PatterningDouble Patterning
Double Patterning
 
Professor Dame Carole Jordan: a remarkable career
Professor Dame Carole Jordan: a remarkable careerProfessor Dame Carole Jordan: a remarkable career
Professor Dame Carole Jordan: a remarkable career
 
EBuitrago Vertically Stacked SiNW Sensor
EBuitrago Vertically Stacked SiNW SensorEBuitrago Vertically Stacked SiNW Sensor
EBuitrago Vertically Stacked SiNW Sensor
 
Semiconductor equipment industry report, 2009
Semiconductor equipment industry report, 2009Semiconductor equipment industry report, 2009
Semiconductor equipment industry report, 2009
 
SPIE- 9422-63 Elizabeth Buitrago
SPIE- 9422-63 Elizabeth BuitragoSPIE- 9422-63 Elizabeth Buitrago
SPIE- 9422-63 Elizabeth Buitrago
 
Double patterning for 32nm and beyond
Double patterning for 32nm and beyondDouble patterning for 32nm and beyond
Double patterning for 32nm and beyond
 
Public Presentation, ASML DB Conference Singapore
Public Presentation, ASML DB Conference SingaporePublic Presentation, ASML DB Conference Singapore
Public Presentation, ASML DB Conference Singapore
 
EUV Lithography Final
EUV Lithography FinalEUV Lithography Final
EUV Lithography Final
 
Lect10_Analog Layout and Process Concern
Lect10_Analog Layout and Process ConcernLect10_Analog Layout and Process Concern
Lect10_Analog Layout and Process Concern
 
Public Presentation, ASML EUV forecast Jul 2010
Public Presentation, ASML EUV forecast Jul 2010Public Presentation, ASML EUV forecast Jul 2010
Public Presentation, ASML EUV forecast Jul 2010
 
Plasma physics by Dr. imran aziz
Plasma physics by Dr. imran azizPlasma physics by Dr. imran aziz
Plasma physics by Dr. imran aziz
 
Masked ion beam lithography
Masked ion beam lithographyMasked ion beam lithography
Masked ion beam lithography
 
Analog and Digital VLSI Design Notes - Akshansh
Analog and Digital VLSI Design Notes - AkshanshAnalog and Digital VLSI Design Notes - Akshansh
Analog and Digital VLSI Design Notes - Akshansh
 
Double gate mosfet
Double gate mosfetDouble gate mosfet
Double gate mosfet
 
finfet & dg-fet technology
finfet & dg-fet technologyfinfet & dg-fet technology
finfet & dg-fet technology
 
Electron beam lithography
Electron beam lithographyElectron beam lithography
Electron beam lithography
 
Plasma science and applications 2013
Plasma science and applications 2013Plasma science and applications 2013
Plasma science and applications 2013
 

Similaire à 06 light management by nano materials-huis in t veld, kriya materials

Development of Multi-functional Coatings(Anti-Reflective and Anti-Fogging)
Development of Multi-functional Coatings(Anti-Reflective and Anti-Fogging)Development of Multi-functional Coatings(Anti-Reflective and Anti-Fogging)
Development of Multi-functional Coatings(Anti-Reflective and Anti-Fogging)
HasanAhmed139
 
Khepricoat product-brochure
Khepricoat product-brochureKhepricoat product-brochure
Khepricoat product-brochure
David Franz
 
Antireflection coatings
Antireflection coatingsAntireflection coatings
Antireflection coatings
ajay singh
 

Similaire à 06 light management by nano materials-huis in t veld, kriya materials (20)

Development of Multi-functional Coatings(Anti-Reflective and Anti-Fogging)
Development of Multi-functional Coatings(Anti-Reflective and Anti-Fogging)Development of Multi-functional Coatings(Anti-Reflective and Anti-Fogging)
Development of Multi-functional Coatings(Anti-Reflective and Anti-Fogging)
 
Optical coating
Optical coatingOptical coating
Optical coating
 
DSM KhepriCoat™ high transmission coating
DSM KhepriCoat™ high transmission coatingDSM KhepriCoat™ high transmission coating
DSM KhepriCoat™ high transmission coating
 
DSM KhepriCoat™ high transmission coatings
DSM KhepriCoat™ high transmission coatings DSM KhepriCoat™ high transmission coatings
DSM KhepriCoat™ high transmission coatings
 
Khepricoat product-brochure
Khepricoat product-brochureKhepricoat product-brochure
Khepricoat product-brochure
 
Solar Cells -- Faissal's Presentation to Dorsinville Group and Guests, on Fri...
Solar Cells -- Faissal's Presentation to Dorsinville Group and Guests, on Fri...Solar Cells -- Faissal's Presentation to Dorsinville Group and Guests, on Fri...
Solar Cells -- Faissal's Presentation to Dorsinville Group and Guests, on Fri...
 
SSasdfsdfgsdfgdfgsdfgdfgsdfgsdfgsdfgdsR.pdf
SSasdfsdfgsdfgdfgsdfgdfgsdfgsdfgsdfgdsR.pdfSSasdfsdfgsdfgdfgsdfgdfgsdfgsdfgsdfgdsR.pdf
SSasdfsdfgsdfgdfgsdfgdfgsdfgsdfgsdfgdsR.pdf
 
Applications of nanomaterials by dr.ck
Applications of nanomaterials by dr.ckApplications of nanomaterials by dr.ck
Applications of nanomaterials by dr.ck
 
Lens enhancement considering for prescribing
Lens enhancement considering for prescribing Lens enhancement considering for prescribing
Lens enhancement considering for prescribing
 
Reflective Material for Solar Thermal
Reflective Material for Solar Thermal Reflective Material for Solar Thermal
Reflective Material for Solar Thermal
 
20320130406031
2032013040603120320130406031
20320130406031
 
Display performance and their physics
Display performance and their physicsDisplay performance and their physics
Display performance and their physics
 
Optics v3 2
Optics v3 2Optics v3 2
Optics v3 2
 
CIGS Solar Cells: How and Why is their Cost Falling?
CIGS Solar Cells: How and Why is their Cost Falling?CIGS Solar Cells: How and Why is their Cost Falling?
CIGS Solar Cells: How and Why is their Cost Falling?
 
Optical Properties of Nanostructured Cerium Oxide Thin Films by Pulsed Laser ...
Optical Properties of Nanostructured Cerium Oxide Thin Films by Pulsed Laser ...Optical Properties of Nanostructured Cerium Oxide Thin Films by Pulsed Laser ...
Optical Properties of Nanostructured Cerium Oxide Thin Films by Pulsed Laser ...
 
Antireflection coatings
Antireflection coatingsAntireflection coatings
Antireflection coatings
 
Power point
Power pointPower point
Power point
 
Introduction to nanoparticles and bionanomaterials
Introduction to nanoparticles and bionanomaterialsIntroduction to nanoparticles and bionanomaterials
Introduction to nanoparticles and bionanomaterials
 
anti reflective coatings on the solar photo voltaic panel's
anti reflective coatings on the solar photo voltaic panel'santi reflective coatings on the solar photo voltaic panel's
anti reflective coatings on the solar photo voltaic panel's
 
Small catadioptric microscope optics 2003
Small catadioptric microscope optics   2003Small catadioptric microscope optics   2003
Small catadioptric microscope optics 2003
 

Plus de Sirris

Challenges and solutions for improved durability of materials - Opin summary ...
Challenges and solutions for improved durability of materials - Opin summary ...Challenges and solutions for improved durability of materials - Opin summary ...
Challenges and solutions for improved durability of materials - Opin summary ...
Sirris
 
Challenges and solutions for improved durability of materials - Hybrid joints...
Challenges and solutions for improved durability of materials - Hybrid joints...Challenges and solutions for improved durability of materials - Hybrid joints...
Challenges and solutions for improved durability of materials - Hybrid joints...
Sirris
 
Challenges and solutions for improved durability of materials - Coatings done...
Challenges and solutions for improved durability of materials - Coatings done...Challenges and solutions for improved durability of materials - Coatings done...
Challenges and solutions for improved durability of materials - Coatings done...
Sirris
 

Plus de Sirris (20)

Presentation - webinar embedded machine learning
Presentation - webinar embedded machine learningPresentation - webinar embedded machine learning
Presentation - webinar embedded machine learning
 
2 - Pattyn - Smart Products Webinar 03-02-2023.
2 - Pattyn - Smart Products Webinar 03-02-2023.2 - Pattyn - Smart Products Webinar 03-02-2023.
2 - Pattyn - Smart Products Webinar 03-02-2023.
 
2021 01-27 - webinar - Corrosie van 3D geprinte onderdelen
2021 01-27 - webinar - Corrosie van 3D geprinte onderdelen2021 01-27 - webinar - Corrosie van 3D geprinte onderdelen
2021 01-27 - webinar - Corrosie van 3D geprinte onderdelen
 
2021/0/15 - Solarwinds supply chain attack: why we should take it sereously
2021/0/15 - Solarwinds supply chain attack: why we should take it sereously2021/0/15 - Solarwinds supply chain attack: why we should take it sereously
2021/0/15 - Solarwinds supply chain attack: why we should take it sereously
 
20200923 inside metal am webinar_laborelec
20200923 inside metal am webinar_laborelec20200923 inside metal am webinar_laborelec
20200923 inside metal am webinar_laborelec
 
20200923 inside metal am webinar sirris-crm
20200923 inside metal am webinar sirris-crm20200923 inside metal am webinar sirris-crm
20200923 inside metal am webinar sirris-crm
 
Challenges and solutions for improved durability of materials - Opin summary ...
Challenges and solutions for improved durability of materials - Opin summary ...Challenges and solutions for improved durability of materials - Opin summary ...
Challenges and solutions for improved durability of materials - Opin summary ...
 
Challenges and solutions for improved durability of materials - Hybrid joints...
Challenges and solutions for improved durability of materials - Hybrid joints...Challenges and solutions for improved durability of materials - Hybrid joints...
Challenges and solutions for improved durability of materials - Hybrid joints...
 
Challenges and solutions for improved durability of materials - Corrosion mon...
Challenges and solutions for improved durability of materials - Corrosion mon...Challenges and solutions for improved durability of materials - Corrosion mon...
Challenges and solutions for improved durability of materials - Corrosion mon...
 
Challenges and solutions for improved durability of materials - Concrete in m...
Challenges and solutions for improved durability of materials - Concrete in m...Challenges and solutions for improved durability of materials - Concrete in m...
Challenges and solutions for improved durability of materials - Concrete in m...
 
Challenges and solutions for improved durability of materials - Coatings done...
Challenges and solutions for improved durability of materials - Coatings done...Challenges and solutions for improved durability of materials - Coatings done...
Challenges and solutions for improved durability of materials - Coatings done...
 
Futureproof by sirris- product of the future
Futureproof by sirris- product of the futureFutureproof by sirris- product of the future
Futureproof by sirris- product of the future
 
2018 11-07-verbinden-ongelijksoortige-materialen-hupico multimaterial welding
2018 11-07-verbinden-ongelijksoortige-materialen-hupico multimaterial welding2018 11-07-verbinden-ongelijksoortige-materialen-hupico multimaterial welding
2018 11-07-verbinden-ongelijksoortige-materialen-hupico multimaterial welding
 
2018 11-07-verbinden-ongelijksoortige-materialen-bil ongelijksoortige materia...
2018 11-07-verbinden-ongelijksoortige-materialen-bil ongelijksoortige materia...2018 11-07-verbinden-ongelijksoortige-materialen-bil ongelijksoortige materia...
2018 11-07-verbinden-ongelijksoortige-materialen-bil ongelijksoortige materia...
 
2018 11-07-verbinden-ongelijksoortige-materialen-sirris bil-flanders_make_mmj
2018 11-07-verbinden-ongelijksoortige-materialen-sirris bil-flanders_make_mmj2018 11-07-verbinden-ongelijksoortige-materialen-sirris bil-flanders_make_mmj
2018 11-07-verbinden-ongelijksoortige-materialen-sirris bil-flanders_make_mmj
 
2018 11-07-verbinden-ongelijksoortige-materialen-ku leuven-lijmen
2018 11-07-verbinden-ongelijksoortige-materialen-ku leuven-lijmen2018 11-07-verbinden-ongelijksoortige-materialen-ku leuven-lijmen
2018 11-07-verbinden-ongelijksoortige-materialen-ku leuven-lijmen
 
Slotevent ‘Verbinden van ongelijksoortige materialen’ - Lcv lasercladding for...
Slotevent ‘Verbinden van ongelijksoortige materialen’ - Lcv lasercladding for...Slotevent ‘Verbinden van ongelijksoortige materialen’ - Lcv lasercladding for...
Slotevent ‘Verbinden van ongelijksoortige materialen’ - Lcv lasercladding for...
 
Slotevent ‘Verbinden van ongelijksoortige materialen’ - Juno industries mecha...
Slotevent ‘Verbinden van ongelijksoortige materialen’ - Juno industries mecha...Slotevent ‘Verbinden van ongelijksoortige materialen’ - Juno industries mecha...
Slotevent ‘Verbinden van ongelijksoortige materialen’ - Juno industries mecha...
 
Slotevent ‘Verbinden van ongelijksoortige materialen’ - Castolin verbinden v...
Slotevent ‘Verbinden van ongelijksoortige materialen’ - Castolin  verbinden v...Slotevent ‘Verbinden van ongelijksoortige materialen’ - Castolin  verbinden v...
Slotevent ‘Verbinden van ongelijksoortige materialen’ - Castolin verbinden v...
 
Masterclass Mechatronics 4.0 - Indoor and outdoor localisation and positionin...
Masterclass Mechatronics 4.0 - Indoor and outdoor localisation and positionin...Masterclass Mechatronics 4.0 - Indoor and outdoor localisation and positionin...
Masterclass Mechatronics 4.0 - Indoor and outdoor localisation and positionin...
 

Dernier

Artificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and MythsArtificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and Myths
Joaquim Jorge
 

Dernier (20)

Data Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt RobisonData Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt Robison
 
Bajaj Allianz Life Insurance Company - Insurer Innovation Award 2024
Bajaj Allianz Life Insurance Company - Insurer Innovation Award 2024Bajaj Allianz Life Insurance Company - Insurer Innovation Award 2024
Bajaj Allianz Life Insurance Company - Insurer Innovation Award 2024
 
Artificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and MythsArtificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and Myths
 
08448380779 Call Girls In Greater Kailash - I Women Seeking Men
08448380779 Call Girls In Greater Kailash - I Women Seeking Men08448380779 Call Girls In Greater Kailash - I Women Seeking Men
08448380779 Call Girls In Greater Kailash - I Women Seeking Men
 
Handwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed textsHandwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed texts
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...
 
Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024
 
08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking Men08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking Men
 
The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
 
Tech Trends Report 2024 Future Today Institute.pdf
Tech Trends Report 2024 Future Today Institute.pdfTech Trends Report 2024 Future Today Institute.pdf
Tech Trends Report 2024 Future Today Institute.pdf
 
08448380779 Call Girls In Friends Colony Women Seeking Men
08448380779 Call Girls In Friends Colony Women Seeking Men08448380779 Call Girls In Friends Colony Women Seeking Men
08448380779 Call Girls In Friends Colony Women Seeking Men
 
Presentation on how to chat with PDF using ChatGPT code interpreter
Presentation on how to chat with PDF using ChatGPT code interpreterPresentation on how to chat with PDF using ChatGPT code interpreter
Presentation on how to chat with PDF using ChatGPT code interpreter
 
Scaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationScaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organization
 
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
 
Exploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone ProcessorsExploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone Processors
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
 
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
 
🐬 The future of MySQL is Postgres 🐘
🐬  The future of MySQL is Postgres   🐘🐬  The future of MySQL is Postgres   🐘
🐬 The future of MySQL is Postgres 🐘
 

06 light management by nano materials-huis in t veld, kriya materials

  • 1. Kriya Materials, general presentation 1
  • 2. Kriya Materials, general presentation 2 Light management by nano materials Optical coatings for managing light propagation in “lighting”, “display” and other application areas
  • 3. Kriya Materials, general presentation Overview • General introduction Kriya Materials • Anti-Reflection coating – Classical AR models • Single layer • Double layer • Multi layer – AR coating developed by Kriya Materials • 1-pot AR (unique feature) • Light coupling – Light in-coupling for Solar – Light out-coupling for LED/OLED/Display 3
  • 4. Kriya Materials, general presentation General introduction Kriya Materials  Started in 2006 at Chemelot Campus, The Netherlands  Develops and manufactures custom made functional coatings based upon its own nano particles for various markets,  Active in various fields following a set of global trends;  Lighting; Led and oled; Improving energy efficiency  Agro greenhouses; Chemical reduction, plant growth regulation  Energy conservation; Building and cars, by climate control film coatings  Energy production solar; Functional coatings for solar panels, improving efficiency levels  Display materials; Functional coatings, wide range 4
  • 5. Kriya Materials, general presentation Anti-Reflection coating Method for Anti-Reflection (AR); “To lower the Fresnel reflection losses which are always present at any interface separating different indices of reflection”. • Classical AR models – Single layer – Double layer – Multi layer • AR coating developed by Kriya Materials – 1-pot AR (unique feature) 5
  • 6. Kriya Materials, general presentation Classical AR models Single layer • Optimal RI of the coating layer is midway between that of the surrounding medium n0 and the substrate n2 e.g. MgF2 (n = 1.37[2]) • Optimal layer thickness is one-quarter wavelength[1] – Based on a single layer of low RI (n) material and thickness (d) • Reduces reflection at a specific (targeted) wavelength (λ/4[1]) • Reflection at non-targeted wavelengths is never greater than the reflection of the untreated substrate • Drawback of this technique – No suitable material with low enough RI and sufficient mechanical hardness available 6 AR coating; n1, λ/4 Substrate; n2 Medium (air); n0
  • 7. Kriya Materials, general presentation Classical AR models Double layer • Based on two layers with contrasting refractive indexes – Low RI layer e.g. MgF2 (n=1.37[2]) on high RI layer e.g. ZnS (n=2.37[3]) – Drawback of this technique • Reflection at non-targeted wavelengths can be higher than the reflection of the uncoated substrate – Optimal layer thickness is one quarter wavelength for each separate layer[1] 7 High RI coating; n2, λ/4 Substrate; n3 Medium (air); n0 Low RI coating; n1, λ/4
  • 8. Kriya Materials, general presentation Classical AR models Multi layer • Based on three or more layers of low, medium and high refractive indexes – Stack for three layers is • n1 low RI coating • n2 high RI coating • n3 medium RI coating – Optimal layer thickness is; one quarter wavelength for n1, one half wavelength for n2 and one quarter wavelength for n3[1] • General rule of thumb, more layers = less reflection = higher production cost 8 Medium RI coating; n3, λ/4 Substrate; n4 High RI coating; n2, λ/2 Medium (air); n0 Low RI coating; n1, λ/4
  • 9. Kriya Materials, general presentation AR coating developed by Kriya Materials • 1-pot AR coating (unique feature) – Innovative solution to apply a single wet coating layer – Production cost of a single layer AR with the effectiveness of a double layer AR 9
  • 10. Kriya Materials, general presentation 1-pot AR coating • Deposition of a single wet coating layer – Contains various special modified nanoparticle materials • Nanoparticle materials are developed and produced at Kriya Materials • Applicable on various plastic substrates – PET, PC and TAC have been tested so far • Innovative solution to overcome high production cost 10
  • 11. Kriya Materials, general presentation 11 1-pot AR coating Reflection spectra of Kriya’s 1-pot AR coating on TAC and PC (both sides coated). Data recorded with a Ocean Optics USB2000 detector Thickness ≈150 nm. Rmin = 4λ = 600 nm
  • 12. Kriya Materials, general presentation 12 Light coupling • Light in-coupling – Promotion of light refraction towards an absorber • Light out-coupling – Promotion of light extraction from a light source • Similar approach for in- and out-coupling
  • 13. Kriya Materials, general presentation 13 Light in-coupling for Solar • Promoting the light in-coupling for solar cels through a refractive index matched textured resist • Increasing the efficiency of CIGS solar cels – Standard practice is to apply a textured resist (polymeric coating) e.g. Moth eye structure[4] – Additional efficiency gain by increasing the refractive index of the textured resist[5] In collaboration with TNO[5]
  • 14. Kriya Materials, general presentation 14 Light in-coupling for Solar • Textured resist – Textured resist is produced through Nano Imprint Lithography (NIL) – Decreases the reflection at the interface which increases the amount of photons – By matching the refractive index of the resist to that of the AZO layer, reflection losses at the resist/AZO interface are minimalized Schematic representation of a CIGS solar cell (a) without and (b) with textured resist[5]
  • 15. Kriya Materials, general presentation 15 Light in-coupling for Solar • Schematic representation of the reflection on a non-textured resist and textured resist Non-textured resist, x% reflected Textured resist, x% reflected which is partially “re-used”. Typical increase of absorption is about 25% through use of a textured structure Light propagation “Normal”
  • 16. Kriya Materials, general presentation 16 Light in-coupling for Solar Reflection of AZO on glass (blue), AZO on glass coated with non-textured resist (green) and AZO on glass coated with textured resist (red).[5] Integral reflection 300-1100 nm AZO on glass (blue) R=14.5% AZO on glass non-textured resist (green) R=13.3% AZO on glass textured resist (red) R=5.7%
  • 17. Kriya Materials, general presentation 17 Light coupling ✔ Light in-coupling – Promotion of light refraction towards an absorber • Light out-coupling – Promotion of light extraction from a light source • Mechanism similar approach for in- and out-coupling
  • 18. Kriya Materials, general presentation 18 Light out-coupling for LED/OLED/Displays • Promoting the light out-coupling in various applications by refractive index matching (a) Escape cone of a LED without and with encapsulation[6] (b) Light-extraction efficiency ratio for GaN and GaP as a function of the encapsulant refractive index[6] KriyaRI
  • 19. Kriya Materials, general presentation 19 References [1] Nave, R. (2014) Anti-Reflection Coatings. Retrieved from: http://hyperphysics.phy-astr.gsu.edu/hbase/phyopt/antiref.html [2] Optical constants of MgF2 (Magnesium fluoride), Li 1980. Retrieved from: http://refractiveindex.info [3] Optical constants of ZnS (Zinc sulfide), Debenham 1984 - Cubic ZnS. Retrieved from: http://refractiveindex.info [4] Al-Turk, S. (2011) Analytic optimization modeling of Anti-Reflection coatings for Solar Cells. Master’s thesis. MC Master University, United Status of America. [5] Burghoorn, M., Kniknie, B., van Deelen, J., Xu, M., Vroon, Z., van Ee, R., van de Belt, R., and Buskens, P. (2014) Improving the efficiency of copper indium gallium (Di)selenide (CIGS) solar cells through integration of a moth-eye textured resist with a refractive index similar to aluminium doped zinc oxide. AIP ADVANCES. 4 (127154), 127154-1 – 127154-7. [6] Mont, F.W. et al. (2008) High refractive index TiO2 nanoparticle-loaded encapsulants for LED. J. Appl. Phys, 103 (083120), 083120-1 - 083120-6.