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Diamond-like Carbon Thin Film with Controlled Zeta Potential for Medical Application [Nitta et. al., Diamond & Related Materials 17 (2008) 1972-1976] MSE 576 Thin Films & Analysis Presentation Dec 4 th  2008 Deepak Rajput Graduate Research Assistant Center for Laser Applications University of Tennessee Space Institute Tullahoma, Tennessee 37388-9700 Email:  [email_address]   Web:  http://drajput.com
Outline ,[object Object],[object Object],[object Object]
Diamond-like carbon ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Diamond-like carbon ,[object Object],[object Object],[object Object],[object Object],[object Object]
Diamond-like carbon ,[object Object],[object Object],[object Object],Solution: DLC thin film
Diamond-like carbon ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
What’s zeta potential ? ,[object Object],[object Object],[object Object]
What’s zeta potential ? ,[object Object]
What’s zeta potential ? ,[object Object]
The significance of zeta potential  ,[object Object],[object Object],[object Object],[object Object],[object Object]
The significance of zeta potential Zeta potential of colloids in water and waste water Source: ASTM Standard D4187-82, American Society for Testing and Materials, 1985   Zeta potential (mV) Stability behavior of the colloid 0 to ±5 Rapid coagulation/flocculation ±10 to ±30 Incipient instability ±30 to ±40 Moderate stability ±40 to ±60 Good stability > ±61 Excellent stability
Zeta potential in biological environ ,[object Object],[object Object],[object Object],[object Object]
Zeta potential in biological environ ,[object Object],[object Object],[object Object]
Experimental ,[object Object],[object Object],[object Object],[object Object],[object Object]
Experimental ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Composition ratio: XPS results C1s N1s O1s C 2 H 2 +O 2 80.6 0.6 18.8 C 2 H 2 +NH 3 63.05 22.5 14.45
Results: C 2 H 2  followed by O 2  treatment XPS spectra of C1s waveform. The C1s peak assigned to the binding energy of  C-C, C-O, C=O and O=C-O bonded network. The binding amounts were  71.8, 18.6, 2.9, and 6.5 atomic %, respectively. C1s N1s O1s
[object Object],[object Object],[object Object],[object Object],Results: C 2 H 2  followed by O 2  treatment Functional Group Before  After C – C  82.7 71.8 C – O 11.7 18.6 C=O 3.8 2.9 O=C – O  1.7 6.5
[object Object],[object Object],Results: C 2 H 2  followed by O 2  treatment
[object Object],[object Object],Results: C 2 H 2  followed by O 2  treatment
Results: C 2 H 2  followed by NH 3  treatment C1s N1s O1s Binding amounts 79.1 (C-C) 11.6 (C-O) 7.2 (C=O) 2 (O=C-O) (atomic %) Binding amounts 20.7 (C-N=C) 58.7 (C-NH2) 16.3 (C-N) 1.7 (N-O) 2.6 (N=O) (atomic %)
[object Object],[object Object],[object Object],[object Object],[object Object],Results: C 2 H 2  followed by NH 3  treatment
Results: Contact angle measurement C 2 H 2 +O 2  treatment C 2 H 2 +NH 3  treatment ,[object Object],[object Object]
Results: Zeta potential measurement Dependence of zeta potential on O=C-O/C  The zeta potential decreased twice as much as untreated sample  with increasing in the O=C-O/C ratio
[object Object],[object Object],Summary
[object Object]
[object Object],[object Object]

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Measures of Dispersion and Variability: Range, QD, AD and SD
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social pharmacy d-pharm 1st year by Pragati K. Mahajan
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Zeta Potential

  • 1. Diamond-like Carbon Thin Film with Controlled Zeta Potential for Medical Application [Nitta et. al., Diamond & Related Materials 17 (2008) 1972-1976] MSE 576 Thin Films & Analysis Presentation Dec 4 th 2008 Deepak Rajput Graduate Research Assistant Center for Laser Applications University of Tennessee Space Institute Tullahoma, Tennessee 37388-9700 Email: [email_address] Web: http://drajput.com
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  • 11. The significance of zeta potential Zeta potential of colloids in water and waste water Source: ASTM Standard D4187-82, American Society for Testing and Materials, 1985 Zeta potential (mV) Stability behavior of the colloid 0 to ±5 Rapid coagulation/flocculation ±10 to ±30 Incipient instability ±30 to ±40 Moderate stability ±40 to ±60 Good stability > ±61 Excellent stability
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  • 16. Results: C 2 H 2 followed by O 2 treatment XPS spectra of C1s waveform. The C1s peak assigned to the binding energy of C-C, C-O, C=O and O=C-O bonded network. The binding amounts were 71.8, 18.6, 2.9, and 6.5 atomic %, respectively. C1s N1s O1s
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  • 20. Results: C 2 H 2 followed by NH 3 treatment C1s N1s O1s Binding amounts 79.1 (C-C) 11.6 (C-O) 7.2 (C=O) 2 (O=C-O) (atomic %) Binding amounts 20.7 (C-N=C) 58.7 (C-NH2) 16.3 (C-N) 1.7 (N-O) 2.6 (N=O) (atomic %)
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  • 23. Results: Zeta potential measurement Dependence of zeta potential on O=C-O/C The zeta potential decreased twice as much as untreated sample with increasing in the O=C-O/C ratio
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