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Theoretical study of hydrogen microstructure in models of hydrogenated amorphous silicon

✍ Scribed by Timilsina, Rajendra ;Biswas, Parthapratim


Book ID
105365729
Publisher
John Wiley and Sons
Year
2010
Tongue
English
Weight
249 KB
Volume
207
Category
Article
ISSN
0031-8965

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✦ Synopsis


Abstract

We study the distribution of hydrogen and various hydride configurations in realistic models of a‐Si:H for two different concentrations generated via experimentally constrained molecular relaxation approach (ECMR) 1. The microstructure corresponding to low (<10%) and high (>20%) concentration of H atoms are addressed and are compared to the experimental results with particular emphasis on the size of H clusters and local environment of H atoms. The linewidths of the nuclear magnetic resonance (NMR) spectrum for the model configurations are calculated in order to compare to the experimental NMR data. Our study shows the presence of isolated hydrogen atoms, small and relatively large clusters with average proton–proton neighbor distance in the clusters around 1.6–2.4 Å that have been observed in multiple‐quantum NMR (MQ‐NMR) experiments.


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A review is given of the current state of the field of structural studies of hydrogenated amorphous silicon. Particular emphasis is placed on the suitability of the various structural probes described for routine characterization of material for photovoltaic applications. ## 2. Techniques The tech