Modeling and analysis of a bias-free hydrogen production approach using perovskite photocathode and lignocellulosic biomass

Y Zhai, J Li, D He, H Liang, Y Sha, G Li - Energy Conversion and …, 2023 - Elsevier
The bias-free solar hydrogen production approach using perovskite photocathode and
lignocellulosic biomass is a novel hydrogen production approach that can effectively utilize …

Optimizing inorganic SnS/ZrS2 heterojunction solar cells: Numerical analysis and performance insights

SM Alghamdi, RS Almufarij, S Tahir, M Khalil… - Solid State …, 2024 - Elsevier
Abstract The SnS and ZrS 2 have emerged as promising photovoltaic materials. This paper
gives the first numerical analysis of inorganic SnS/ZrS 2 heterojunction solar cells using …

Advances in green energy conversion efficiency and interfacial engineering investigations of lead-free FASnI3-based PSC device

M Kumar, M Devi, DV Singh, K Gupta, A Raj… - Journal of Physics and …, 2024 - Elsevier
Formamidinium tin iodide (HC (NH 2) 2 SnI 3–FASnI 3) based lead-free perovskite solar
cells (PSCs) have gained significant interest due to higher carrier mobility, wider band gap …

Simulation study of cadmium-free CIGS solar cell for efficiency enhancement by minimizing recombination losses through back surface field mechanism

A Kumar, SM Giripunje, AK Patel, S Gohri - Solid State Communications, 2024 - Elsevier
Thin-film photovoltaic cells provide benefits over conventional first-generation technology,
including lighter weight, greater flexibility, and lower power generation costs. Chalcogenide …

Enhanced photoconversion efficiency of Cu2MnSnS4 solar cells by Sn-/Zn-based oxides and chalcogenides buffer and electron transport layers

A Kowsar, M Shafayet-Ul-Islam, MAA Shaikh… - Solar Energy, 2023 - Elsevier
Abstract Copper Manganese Tin Sulfide, Cu 2 MnSnS 4 (CMTS), has emerged as a
potential candidate for cost-competitive, eco-friendly single-or multiple pn junction kesterite …

Theoretical Insights of Degenerate ZrS2 as a New Buffer for Highly Efficient Emerging Thin‐Film Solar Cells

KT Arockiya-Dass, K Sekar, L Marasamy - Energy Technology, 2023 - Wiley Online Library
SnS, Sb2Se3, Cu2SnS3, CuSb (S, Se) 2, and Cu2BaSn (S, Se) 4 are emerging as
promising light absorbers for thin‐film photovoltaics due to their extraordinary optoelectronic …

Direct Z-scheme ZrS2/InP heterostructure as an efficient photocatalyst for overall water-splitting under acidic, alkaline and neutral environments

YS Yang, Y Zhang, YF Luo, SZ Sun, JH Li… - Materials Science in …, 2025 - Elsevier
Photocatalytic water-splitting for hydrogen production by building heterostructure is an
efficient approach to resolve the current environmental pollution problem. Here, the ZrS …

Enhancing the efficiency and stability of Non_Toxic RbSn0. 5Ge0. 5I3_Based perovskite solar cells through optimization

A Laouid, AA Belghiti, K Wisniewski, A Abouais… - Materials Science and …, 2024 - Elsevier
In the search for alternatives to toxic lead-based perovskite materials, RbSn 0.5 Ge 0.5 I 3
has emerged as a promising candidate. It offers a nontoxic composition while holding …

Numerical optimization of inorganic p-Sb2Se3/n-ZrS2 heterojunction solar cells: achieving high efficiency through SCAPS-1D simulation

A Ashfaq, SM Alghamdi, EA Shokralla, MMS HE… - Physica …, 2024 - iopscience.iop.org
Abstract p-Sb 2 Se 3 and n-ZrS 2 materials show strong potential for cost-effective
photovoltaic applications. This study presents a detailed numerical analysis of p-Sb 2 Se 3/n …

SCAPS 1D based study of hole and electron transfer layers to improve MoS2− ZrS2 solar cell efficiency

BS Shah, JP Tailor, SH Chaki… - … and Simulation in …, 2024 - iopscience.iop.org
In the realm of photovoltaic applications, scientists and technocrats are striving to maximize
the solar cell input photon energy conversion to electricity. However, achieving optimal cell …