Suman Rijal

Suman Rijal

University of Toledo

H-index: 9

North America-United States

About Suman Rijal

Suman Rijal, With an exceptional h-index of 9 and a recent h-index of 9 (since 2020), a distinguished researcher at University of Toledo,

His recent articles reflect a diverse array of research interests and contributions to the field:

Effect of CdS Annealing on the Performance of Antimony Selenosulfide Solar Cells

High Open Circuit Voltage with Organic Hole Transport Layers in Group V Doped CdSeTe Solar Cells

Post‐Annealing Treatment on Hydrothermally Grown Antimony Sulfoselenide Thin Films for Efficient Solar Cells

Water-assisted lift-off process for flexible CdTe solar cells

Bifacial CdTe Solar Cells with Copper Chromium Oxide Back‐Buffer Layer

Flexible and Lightweight CdS/CdTe Solar Cells via a Water-Assisted Lift-Off Process

Numerical modeling of capacitance signatures of perovskite solar cells

Hydrothermally Deposited Antimony Sulfide Solar Cells with Approaching 800 mV

Suman Rijal Information

University

Position

The

Citations(all)

221

Citations(since 2020)

221

Cited By

2

hIndex(all)

9

hIndex(since 2020)

9

i10Index(all)

9

i10Index(since 2020)

9

Email

University Profile Page

Google Scholar

Top articles of Suman Rijal

Effect of CdS Annealing on the Performance of Antimony Selenosulfide Solar Cells

2023/6/11

High Open Circuit Voltage with Organic Hole Transport Layers in Group V Doped CdSeTe Solar Cells

2023/6/11

Post‐Annealing Treatment on Hydrothermally Grown Antimony Sulfoselenide Thin Films for Efficient Solar Cells

Solar RRL

2023/2

Water-assisted lift-off process for flexible CdTe solar cells

ACS Applied Energy Materials

2023/1/10

Bifacial CdTe Solar Cells with Copper Chromium Oxide Back‐Buffer Layer

Solar Rrl

2022/11

Flexible and Lightweight CdS/CdTe Solar Cells via a Water-Assisted Lift-Off Process

2022/6/5

Numerical modeling of capacitance signatures of perovskite solar cells

2022/6/5

Hydrothermally Deposited Antimony Sulfide Solar Cells with Approaching 800 mV

2022/6/5

Solution-Processed Copper Selenium Oxide as Hole Transport Layer for CdS/CdTe Solar Cells

2022/6/5

Post-annealing Treatment on Hydrothermally Grown Sb2 (S, Se) 3 Thin Films for Efficient Solar Cells

2022/6/5

Templated growth and passivation of vertically oriented antimony selenide thin films for high‐efficiency solar cells in substrate configuration

Advanced Functional Materials

2022/3

Antimony Chalcogenide: Promising Material for Photovoltaics

2022

Suman Rijal
Suman Rijal

H-Index: 1

Copper iodide nanoparticles as a hole transport layer to CdTe photovoltaics: 5.5% efficient back-illuminated bifacial CdTe solar cells

Solar energy materials and solar cells

2022/1/1

Improving CdSeTe Devices With a Back Buffer Layer of CuxAlOy

IEEE Journal of Photovoltaics

2021/11/4

Optical properties of thin film Sb2Se3 and identification of its electronic losses in photovoltaic devices

Solar Energy

2021/11/1

Effects of Cu precursor on the performance of efficient CdTe solar cells

ACS Applied Materials & Interfaces

2021/8/4

Optimizing the Selenization of Sb2Se3 Absorbers to Improve the Film Quality and Solar Cell Performances

2021/6/20

High-Photovoltage All-Perovskite Tandem Solar Cells for Photovoltaic-Electrolysis Water-Splitting Applications

2021/6/20

Influence of Post-selenization Temperature on the Performance of Substrate-Type Sb2Se3 Solar Cells

ACS Applied Energy Materials

2021/4/26

Suman Rijal
Suman Rijal

H-Index: 1

Yanfa Yan
Yanfa Yan

H-Index: 79

Copper Iodide (CuI) Nanoparticles as a Hole Transport Layer to Cadmium Telluride (CdTe) Solar Cells.

Bulletin of the American Physical Society

2021/4/10

See List of Professors in Suman Rijal University(University of Toledo)

Co-Authors

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