Weijun Ke

About Weijun Ke

Weijun Ke, With an exceptional h-index of 58 and a recent h-index of 54 (since 2020), a distinguished researcher at Wuhan University, specializes in the field of Perovskite solar cells, photodetectors, and light-emitting diodes.

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

Tail states suppression via surface-modification of wide-bandgap perovskites for high-efficiency all-perovskite photovoltaic tandems

Defect Passivation and Carrier Management via a Multifunctional Additive for Efficient and Stable Wide-bandgap Perovskite Solar Cells with High Fill Factor

Spacer Conformation Induced Multiple Hydrogen Bonds in 2D Perovskite Toward Highly Efficient Optoelectronic Devices

Mixed tin-lead perovskites with balanced crystallization and oxidation barrier for all-perovskite tandem solar cells

Tailoring Perovskite Surface Potential and Chelation Advances Efficient Solar Cells

Intermediate Phase Suppression with Long Chain Diammonium Alkane for High Performance Wide‐Bandgap and Tandem Perovskite Solar Cells

Spontaneous crystallization of strongly confined CsSnxPb1-xI3 perovskite colloidal quantum dots at room temperature

Micro/Nano Perovskite Materials for Advanced X-ray Detection and Imaging

Weijun Ke Information

University

Position

___

Citations(all)

13519

Citations(since 2020)

10731

Cited By

7078

hIndex(all)

58

hIndex(since 2020)

54

i10Index(all)

83

i10Index(since 2020)

82

Email

University Profile Page

Google Scholar

Weijun Ke Skills & Research Interests

Perovskite solar cells

photodetectors

and light-emitting diodes

Top articles of Weijun Ke

Tail states suppression via surface-modification of wide-bandgap perovskites for high-efficiency all-perovskite photovoltaic tandems

Chemical Engineering Journal

2024/4/16

Defect Passivation and Carrier Management via a Multifunctional Additive for Efficient and Stable Wide-bandgap Perovskite Solar Cells with High Fill Factor

Nano Energy

2024/4/15

Spacer Conformation Induced Multiple Hydrogen Bonds in 2D Perovskite Toward Highly Efficient Optoelectronic Devices

Advanced Materials

2024/3/27

Mixed tin-lead perovskites with balanced crystallization and oxidation barrier for all-perovskite tandem solar cells

Nature Communications

2024/3/14

Tailoring Perovskite Surface Potential and Chelation Advances Efficient Solar Cells

Advanced Materials

2024/3/13

Intermediate Phase Suppression with Long Chain Diammonium Alkane for High Performance Wide‐Bandgap and Tandem Perovskite Solar Cells

Advanced Materials

2024/3/7

Spontaneous crystallization of strongly confined CsSnxPb1-xI3 perovskite colloidal quantum dots at room temperature

Nature Communications

2024/2/21

Micro/Nano Perovskite Materials for Advanced X-ray Detection and Imaging

ACS Nano

2024/2/19

Alcohol-dispersed polymer complex as an effective and durable interface modifier for nip perovskite solar cells

Journal of Energy Chemistry

2024/2/9

A Crystalline 2D Fullerene‐Based Metal Halide Semiconductor for Efficient and Stable Ideal‐bandgap Perovskite Solar Cells

Advanced Energy Materials

2024

Defect-less formamidinium Sn–Pb perovskite grown on a fluorinated substrate with top-down crystallization control for efficient and stable photovoltaics

Energy & Environmental Science

2024

Enhancing Efficiency and Intrinsic Stability of Large‐Area Blade‐Coated Wide‐Bandgap Perovskite Solar Cells Through Strain Release

Advanced Functional Materials

2024

Regulating Crystal Orientation via Ligand Anchoring Enables Efficient Wide‐Bandgap Perovskite Solar Cells and Tandems

Advanced Materials

2024/1

2D Perovskite Single‐Crystalline Photodetector with Large Linear Dynamic Range for UV Weak‐Light Imaging

Advanced Functional Materials

2024/1

Efficient narrow‐bandgap mixed tin‐lead perovskite solar cells via natural tin oxide doping

Advanced Materials

2023/8

Low‐Dimensional 2‐thiopheneethylammonium Lead Halide Capping Layer Enables Efficient Single‐Junction Methylamine‐Free Wide‐Bandgap and Tandem Perovskite Solar Cells

Advanced Functional Materials

2023/7

Intermediate Phase Engineering with 2, 2‐Azodi (2‐Methylbutyronitrile) for Efficient and Stable Perovskite Solar Cells

Advanced Materials

2023/6

A generic lanthanum doping strategy enabling efficient lead halide perovskite luminescence for backlights

Science Bulletin

2023/5/30

Balanced Charge‐Carrier Transport and Defect Passivation in Far‐Red Perovskite Light‐Emitting Diodes

Laser & Photonics Reviews

2023/4

2, 2-Azodi (2-Methylbutyronitrile)-coordinated Intermediate Phase Engineering for Efficient and Stable Perovskite Solar Cells.

Advanced Materials (Deerfield Beach, Fla.)

2023/3/24

See List of Professors in Weijun Ke University(Wuhan University)