A comprehensive study of hole collection in heterojunction solar cells
Author:
Funder
U.S. Department of Energy
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.4764031
Reference27 articles.
1. Temperature Dependence of Amorphous/Crystalline Silicon Heterojunction Solar Cells
2. Evidence for a hole‐controlled photocurrent in hydrogenated amorphous silicon
3. Influence of defects and band offsets on carrier transport mechanisms in amorphous silicon/crystalline silicon heterojunction solar cells
4. Band offsets and deep defect distribution in hydrogenated amorphous silicon‐crystalline silicon heterostructures
5. Low-Energy Yield Spectroscopy as a Novel Technique for Determining Band Offsets: Application to thec−Si(100)/a−Si:HHeterostructure
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1. Modeling of transport in carrier‐selective contacts in silicon heterojunction solar cells;Progress in Photovoltaics: Research and Applications;2021-11-24
2. The hole transport mechanism of MoOx/a-Si: H(i)/n-Si heterojunction photovoltaic devices: the source of the ‘S-shaped’ behavior;Journal of Physics D: Applied Physics;2020-07-28
3. Understanding Transport in Hole Contacts of Silicon Heterojunction Solar Cells by Simulating TLM Structures;IEEE Journal of Photovoltaics;2020-03
4. Kinetic Monte Carlo simulation of transport in amorphous silicon passivation layers in silicon heterojunction solar cells;Journal of Computational Electronics;2019-07-25
5. Surface Modification of Al-Doped ZnO Transparent Conducive Thin Films with Polycrystalline Zinc Molybdenum Oxide;ACS Applied Materials & Interfaces;2019-06-25
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