Editorial: Emerging thin-film solar cell research

Spanning interfacial engineering, tandem structures, novel deposition methods, and sophisticated modeling, these studies offer

Role of the Seed and Electron Transport Layers in GeSe Thin Film

This work demonstrates the viability of CSS for the deposition of GeSe thin films on two types of ETL, while identifying the role of an front interface layer as a potentially essential

Innovative Vapor Transport Deposition Technique

Over the past few years, the efficiency of Se solar cells has improved significantly, bringing the prospect of industrial production closer

Innovative Vapor Transport Deposition Technique for Selenium Thin-Film

Over the past few years, the efficiency of Se solar cells has improved significantly, bringing the prospect of industrial production closer to reality. This study presents an

Recent Advancements in Thin-Film Solar Modules

In the consumer electronics sector, flexible thin-film solar cells are embedded into portable devices, providing on-the-go charging solutions. Solar-powered backpacks with

Scrutinizing transport phenomena and recombination mechanisms in thin

The endeavor of this study is to investigate an efficient Sb2S3 solar cell structure via accurate analytical modeling.

Recent Advances on the Deposition of Thin Film Solar Cells

These thin film solar cells are composed of an absorber layer sandwiched by two-charge transport layers, that is, electron transport layer (ETL, n-type) and hole transport layer

Editorial: Emerging thin-film solar cell research

Spanning interfacial engineering, tandem structures, novel deposition methods, and sophisticated modeling, these studies offer cutting-edge insights and methodologies to

Thickness-dependent carriers transport in Sb2Se3 thin film

Herein, it is discovered that the carrier transport in Sb. 2Se. 3thin films strongly depends on the film thickness of the absorber layer in n-i-p structure.

Electron transport layers in thin-film solar cells: Materials

An important factor affecting these thin-film PV systems'' efficiency is the electron transport layer (ETL), which efficiently separates charges and reduces recombination losses by selectively

Recent Advancements in Thin-Film Solar Modules

In the consumer electronics sector, flexible thin-film solar cells are embedded into portable devices, providing on-the-go charging

Recent Advances on the Deposition of Thin Film

These thin film solar cells are composed of an absorber layer sandwiched by two-charge transport layers, that is, electron transport

Scrutinizing transport phenomena and recombination

The endeavor of this study is to investigate an efficient Sb2S3 solar cell structure via accurate analytical modeling.

Electron transport layers in thin-film solar cells: Materials

In this work, we introduce a facile and versatile CZTS precursor seed layer engineering technique, which significantly enhances crystal growth and mitigates detrimental defects in the post

SCAPS simulation and design of highly efficient CuBi2O4-based thin-film

Scientists address the complexities of experimenting with thin TFSCs with solar cell capacitance simulators (SCAPS).

SCAPS simulation and design of highly efficient CuBi2O4-based

Scientists address the complexities of experimenting with thin TFSCs with solar cell capacitance simulators (SCAPS).

Role of the Seed and Electron Transport Layers in GeSe Thin

This work demonstrates the viability of CSS for the deposition of GeSe thin films on two types of ETL, while identifying the role of an front interface layer as a potentially essential

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