[HTML][HTML] Inaccuracies in contact resistivity from the Cox–Strack method: A review

B van Wijngaarden, J Yang, J Schmitz - Solar Energy Materials and Solar …, 2022 - Elsevier
Abstract Recently, the Cox–Strack method for contact resistivity determination is increasingly
used in the context of photovoltaic cell engineering. This document reviews the literature …

[HTML][HTML] Optoelectrical analysis of TCO+ Silicon oxide double layers at the front and rear side of silicon heterojunction solar cells

A Cruz, D Erfurt, P Wagner, AB Morales-Vilches… - Solar Energy Materials …, 2022 - Elsevier
Silicon Heterojunction has become a promising technology to substitute passivated emitter
and rear contact (PERC) solar cells in pursuance of lower levelized cost of electricity through …

Lateral transport in silicon solar cells

J Haschke, G Christmann, C Messmer… - Journal of Applied …, 2020 - pubs.aip.org
We investigate lateral charge carrier transport in crystalline silicon solar cells. Under typical
operation illumination of high-efficiency solar cells, a significant population of electrons and …

Toward TCO‐Free Silicon Heterojunction Solar Cells: Effect of TCO Layers in Electrical Transport and Stability

H Sai, T Matsui - Solar RRL, 2023 - Wiley Online Library
The current silicon heterojunction (SHJ) cells utilize indium‐based transparent conductive
oxide (TCO) layers for supporting the lateral carrier transport. However, In is a typical rare …

Graphene-based electrodes for silicon heterojunction solar cell technology

I Torres, S Fernández, M Fernández-Vallejo, I Arnedo… - Materials, 2021 - mdpi.com
Transparent conductive electrodes based on graphene have been previously proposed as
an attractive candidate for optoelectronic devices. While graphene alone lacks the …

[HTML][HTML] Industrial TCOs for SHJ solar cells: Approaches for optimizing performance and cost

A Cruz, D Erfurt, R Köhler, M Dimer… - Photovoltaics …, 2020 - dsneg.com
Silicon heterojunction (SHJ) solar cell technology is an attractive technology for large-scale
production of solar cells with a high conversion efficiency beyond 24%. One key element of …

Study on the process of hydrogen-doped indium oxide for silicon heterojunction solar cell mass production

Y Yuan, Z Chen, H Peng, X Xu, M Qu, S Yin… - Solar Energy Materials …, 2024 - Elsevier
In this work, we conducted a comparative study on water vapor (H 2 O) process and
hydrogen gas (H 2) process to prepare the IMO: H films based on industrialized DC …

Low-resistance hole contact stacks for interdigitated rear-contact silicon heterojunction solar cells

P Wagner, A Cruz, JC Stang… - IEEE Journal of …, 2021 - ieeexplore.ieee.org
Achieving low contact resistivity for the p-contact in silicon heterojunction (SHJ) solar cells is
challenging when classic n-type transparent conductive oxides (TCOs), such as indium tin …

Imaging of bandtail states in silicon heterojunction solar cells: Nanoscopic current effects on photovoltaics

MY Teferi, H Malissa, AB Morales-Vilches… - ACS Applied Nano …, 2021 - ACS Publications
Silicon heterojunction (SHJ) solar cells represent a promising technological approach
toward higher photovoltaic efficiencies and lower fabrication cost. While the device physics …

Bipolar Circuit Modeling of p+n a-Si:H/c-Si Heterojunction Solar Cells With TCO Schottky Collector Including Early Effect in a-Si:H

MY Ghannam, YM Abdulraheem… - … on Electron Devices, 2021 - ieeexplore.ieee.org
A bipolar equivalent circuit model is developed for silicon hetero-junction silicon solar cells
(SHJ) with a Schottky contact between the p-type amorphous silicon and the transparent …