Fengjia Fan

About Fengjia Fan

Fengjia Fan, With an exceptional h-index of 40 and a recent h-index of 34 (since 2020), a distinguished researcher at University of Science and Technology of China, specializes in the field of Single photon sources, lasers, quantum dots.

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

Surface heterojunction based on n-type low dimensional perovskite film for highly efficient perovskite tandem solar cells

High efficiency warm-white light-emitting diodes based on copper–iodide clusters

Stable and efficient pure blue quantum-dot LEDs enabled by inserting an anti-oxidation layer

Transient absorption spectrometer using excitation by pulse current

Enhanced Spin Polarization from Biaxially Strained Colloidal Quantum Dots

Dipole–dipole-interaction-assisted self-assembly of quantum dots for highly efficient light-emitting diodes

All-perovskite tandem solar cells with 3D/3D bilayer perovskite heterojunction

Stable Blue Quantum Dot LED with 23% external quantum efficiency

Fengjia Fan Information

University

Position

___

Citations(all)

12590

Citations(since 2020)

8860

Cited By

7849

hIndex(all)

40

hIndex(since 2020)

34

i10Index(all)

52

i10Index(since 2020)

50

Email

University Profile Page

Google Scholar

Fengjia Fan Skills & Research Interests

Single photon sources

lasers

quantum dots

Top articles of Fengjia Fan

Surface heterojunction based on n-type low dimensional perovskite film for highly efficient perovskite tandem solar cells

National Science Review

2024/2/13

High efficiency warm-white light-emitting diodes based on copper–iodide clusters

Nature Photonics

2024/2

Stable and efficient pure blue quantum-dot LEDs enabled by inserting an anti-oxidation layer

Nature Communications

2024/1/26

Transient absorption spectrometer using excitation by pulse current

2024/1/25

Enhanced Spin Polarization from Biaxially Strained Colloidal Quantum Dots

The Journal of Physical Chemistry Letters

2024/1/18

Beibei Tang
Beibei Tang

H-Index: 7

Fengjia Fan
Fengjia Fan

H-Index: 31

Dipole–dipole-interaction-assisted self-assembly of quantum dots for highly efficient light-emitting diodes

Nature Photonics

2024/1/3

Stable Blue Quantum Dot LED with 23% external quantum efficiency

2023/8/1

Self-Assembled and Wavelength-Tunable Quantum Dot Whispering-Gallery-Mode Lasers for Backlight Displays

Nano Letters

2023/1/11

Lei Wang
Lei Wang

H-Index: 4

Fengjia Fan
Fengjia Fan

H-Index: 31

Minimizing heating generation in quantum dot LEDs by increasing quasi-Fermi level splitting

2023/1/9

Efficient All‐Perovskite Tandem Solar Cells with Low‐Optical‐Loss Carbazolyl Interconnecting Layers

Angewandte Chemie

2023/12/18

Flexible colloidal quantum dot lasers enabled by self-assembly

Chinese Journal of Chemical Physics

2023/12/1

Minimizing heat generation in quantum dot light-emitting diodes by increasing quasi-Fermi-level splitting

Nature Nanotechnology

2023/10

Electronic structural insight into high‐performance quantum dot light‐emitting diodes

Advanced Functional Materials

2022/11

A library of polytypic copper-based quaternary sulfide nanocrystals enables efficient solar-to-hydrogen conversion

Nature Communications

2022/9/15

Biomimetic non-classical crystallization drives hierarchical structuring of efficient circularly polarized phosphors

Nature Communications

2022/6/9

Enhanced emission directivity from asymmetrically strained colloidal quantum dots

Science Advances

2022/2/23

Evaluating lead halide perovskite nanocrystals as a spin laser gain medium

Nano Letters

2022/1/7

Biomimetic non-classical crystallization induced hierarchically structured efficient circularly polarized phosphors

2022/1/4

Optical-gain-based sensing using inorganic-ligand-passivated colloidal quantum dots

Nano Letters

2021/9/13

Fengjia Fan
Fengjia Fan

H-Index: 31

See List of Professors in Fengjia Fan University(University of Science and Technology of China)

Co-Authors

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