Proceedings ArticleDOI
Tuning the optical properties of p-CuO films by Graphene incorporation for superior p-CuO/n-Si heterojunction photo-detector performance
Anannya Bhattacharya,Anupam Karmakar,Sanatan Chattopadhyay,Jenifar Sultana,Somdatta Paul +4 more
- pp 51-53
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TLDR
In this paper, the influence of graphene nano-particles on the optical, electrical and photo-catalytic activity of p-CuO/n-Si heterojunction was investigated.Abstract:
The present work focuses on the influence of graphene nano-particles on the optical, electrical and photo-catalytic activity of p-CuO/n-Si heterojunction. Both the CuO and graphene nano-particle incorporated CuO (G-CuO) films are grown by Chemical Bath Deposition (CBD) method. A comparative study has been performed on the systematic change of the film morphology and optoelectronic property of the grown films. The study suggests that the electronic and photo-detecting properties of the CBD grown CuO films can be improved by incorporating graphene in it.read more
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Journal ArticleDOI
Effect of annealing time on the structural and optical properties of n-CuO thin films deposited by sol-gel spin coating technique and its application in n-CuO/p-Si heterojunction diode
TL;DR: In this paper, the growth of n-type CuO (copper II oxide) thin film with improved crystallinity on p-Si substrate using sol-gel spin coating process was reported.
References
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Journal ArticleDOI
Graphene-Based Nanoassemblies for Energy Conversion
TL;DR: Graphene-based assemblies are gaining attention as a viable alternate to boost the efficiency of various catalytic and storage reactions in energy conversion applications as discussed by the authors, and the use of reduced graphene oxide has already proved useful in collecting and transporting charge in photoelectrochemical solar cells, photocatalysis, and electrocatalysis.
Journal ArticleDOI
Titanium doped cupric oxide for photovoltaic application
Saeid Masudy-Panah,Saeid Masudy-Panah,K. Radhakrishnan,Hui Ru Tan,Ren Yi,Ten It Wong,Goutam Kumar Dalapati +6 more
TL;DR: The potential of titanium incorporation into cupric oxide (CuO) is demonstrated in this paper, where it is shown that Ti doped CuO reduces sheet resistance and improved the charge transport properties.
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