Weixia LAN

About Weixia LAN

Weixia LAN, With an exceptional h-index of 19 and a recent h-index of 15 (since 2020), a distinguished researcher at Shanghai University, specializes in the field of Organic Electronics, Surface Science.

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

Engineered charge transport layers for improving indoor perovskite photovoltaic performance

Solvent-Assisted Transfer-Printing of Silver Electrodes for High-Performance Organic Photodetectors

Effect of the glass transition temperature of organic materials on exciton recombination region of deep blue OLED under thermal stress

Investigating the Photostability of Organic Photovoltaics for Indoor and Outdoor Applications

“One-Step” Preparation Process for the Flexible and Breathable Piezoelectric Sensor

Novel ternary organic resistive switching memory doped with bipolar materials

Promoting the stability of organic photovoltaics by planar heterojunction optimization

A review of recent advances in vital signals monitoring of sports and health via flexible wearable sensors

Weixia LAN Information

University

Position

___

Citations(all)

877

Citations(since 2020)

676

Cited By

418

hIndex(all)

19

hIndex(since 2020)

15

i10Index(all)

27

i10Index(since 2020)

20

Email

University Profile Page

Google Scholar

Weixia LAN Skills & Research Interests

Organic Electronics

Surface Science

Top articles of Weixia LAN

Engineered charge transport layers for improving indoor perovskite photovoltaic performance

Journal of Physics: Energy

2024/2/26

Solvent-Assisted Transfer-Printing of Silver Electrodes for High-Performance Organic Photodetectors

ACS Applied Electronic Materials

2024/1/30

Effect of the glass transition temperature of organic materials on exciton recombination region of deep blue OLED under thermal stress

Advanced Engineering Materials

2024/1/29

Investigating the Photostability of Organic Photovoltaics for Indoor and Outdoor Applications

Advanced Energy and Sustainability Research

2024

Andrew J Clarke
Andrew J Clarke

H-Index: 3

Weixia Lan
Weixia Lan

H-Index: 9

“One-Step” Preparation Process for the Flexible and Breathable Piezoelectric Sensor

ACS Applied Electronic Materials

2023/8/4

Novel ternary organic resistive switching memory doped with bipolar materials

Nanotechnology

2023/1/4

Promoting the stability of organic photovoltaics by planar heterojunction optimization

Sustainable Energy & Fuels

2023

A review of recent advances in vital signals monitoring of sports and health via flexible wearable sensors

2022/10/13

Absorption Enhancement in Photonic-Structured Organic Solar Cells

2022/9/30

Weixia Lan
Weixia Lan

H-Index: 9

Furong Zhu
Furong Zhu

H-Index: 30

PS-b-PMMA templated ITO electrodes for improving the performance of non-fullerene organic photovoltaics

Organic Electronics

2022/8/1

Operational Stability and Built‐in Potential in Organic Solar Cells

Organic Solar Cells: Materials Design, Technology and Commercialization

2022/6/7

Efficient and ultraviolet‐durable nonfullerene organic solar cells: from interfacial passivation and microstructural modification perspectives

Advanced Materials Interfaces

2022/4

Self-alignment of microstructures based on lateral fluidic force generated by local spatial asymmetry inside a microfluidic channel

AIP Advances

2022/3/1

Thermally stable inverted organic light-emitting diodes using Ag-doped 4, 7-diphenyl-1, 10-phenanthroline as an electron injection layer

Organic Electronics

2021/12/1

New method for preparing small-caliber artificial blood vessel with controllable microstructure on the inner wall based on additive material composite molding

Micromachines

2021/10/26

Enhanced Charge Collection in Non‐Fullerene Organic Solar Cells Using Iridium Complex as an Electron Extraction Layer

Advanced Materials Interfaces

2021/10

Robust organic functional materials by thermally doping with metal oxide

Optical Materials Express

2021/10/1

Toward improved stability of nonfullerene organic solar cells: Impact of interlayer and built‐in potential

EcoMat

2021/10

Steerable fabrication of MoS2 nanoarray through one-step vacuum thermal evaporation technology

Journal of Materials Science

2021/10

Transfer-printed nanoscale poly (3-hexylthiophene-2, 5-diyl) layers for organic photodetectors

ACS Applied Nano Materials

2021/9/20

See List of Professors in Weixia LAN University(Shanghai University)

Co-Authors

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