There is increasing work on printed inorganics as people struggle with the performance of organics in some aspects. For conductors with vastly better conductance and cost, for the best printed batteries, for quantum dot devices and for transistor semiconductors with ten times the mobility, look to the new inorganics. That is the emerging world of new nanoparticle metal and alloy inks that are magnitudes superior in cost, conductivity and stability, such as the flexible zinc oxide based transistor semiconductors working at ten times the frequency and with best stability and life, along with many other inorganic materials. Read the world's only report that pulls all this together in readable form.
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2. Thisreportis suitable forall companiesdevelopingorinterestedinthe opportunityof printedorthinfilm
electronicsmaterials,manufacturingtechnologiesorcomplete device fabricationandintegration.
Market forecasts
Thisreportrevealsthe rapidlyincreasingopportunitiesforinorganicandcomposite chemicalsinthe newprinted
electronics,giventhatsomuch of the limelightisonorganics.Inorganicsencompassvariousmetals,metal
oxidesastransparentconductors(suchas fluorine tinoxide orindiumtinoxide,extensivelyusedindisplaysand
photovoltaictechnologies) ortransistormaterialsaswell asnano-siliconorcopperandsilverinks,whetherin
particle orflake form.Thenthere are inorganicquantumdots,carbon structuressuch as graphene,nanotubes
and the variousbuckyballsetc.However,there ismuchmore,fromlightemittingmaterialstobatteryelements
and the amazingnewmeta-materialsthatrenderthingsinvisible andleadtopreviouslyimpossibleformsof
electronics.
Overthe nexttenyears,improvementsininorganicconductorssuchasthe use of nanotechnologyandthe lack
of improvementof the verypoorlyconductiveandexpensive organicalternativesmeansthatinorganicswill be
preferredformostconductorswhether forelectrodes,antennas,touchbuttons,interconnectsorforother
purposes.Bycontrast,organicsubstratesforflexible electronicssuchaslowcost polyesterfilmandpaperwill be
preferredinmostcasesbecause theyare lightweight,lowcostandhave a wide range of mechanical flexibility.
3. The use of inorganicsubstratessuchas glassrepresentsafall-backparticularlyrequiredwhere thereisfailureto
reduce processingtemperatures.Here stainlesssteel foil printedreel toreel isanimprovement,where possible.
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Technologiescovered
The report considersinorganicprintedandthinfilmelectronicsfordisplays,lighting,semiconductors,sensors,
conductors,photovoltaics,batteriesandmemorygivingdetailedcompanyprofilesnotavailable elsewhere.The
coverage isglobal - withcompaniesfromEastAsiato Europe to Americaall included.
The applicationof the technologyinrelationtoothertypessuchas organicelectronicsandsiliconchipsisgiven,
withdetailedinformationclearlysummarisedinmanytablesandfigures.
Elementsbeingtargeted
In orderto meetthe widening varietyof needsforprintedandpotentiallyprintedelectronics,notleastin
flexible,lowcostform,arapidlyincreasingnumberof elementsare beingbroughttobear.Oxides,amorphous
mixturesandalloysare particularlyinevidence.Eventhe so-calledorganicdevicessuchasOLEDs variously
employsuchmaterialsasB,Al andTi oxidesandnitridesasbarrierlayersagainstwaterandoxygen,Al,Cu,Ag
4. and indiumtinoxide asconductors,Caor Mg cathodesandCoFe nanodots,Irand Eu in lightemitting layers,for
example.
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