FENG LIU

About FENG LIU

FENG LIU, With an exceptional h-index of 114 and a recent h-index of 98 (since 2020), a distinguished researcher at Shanghai Jiao Tong University, specializes in the field of Polymer physics, Synchrotron X-ray techniques, Morphology, Organic semiconductors, Electronic devices.

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

3D Crystal Framework Regulation Enables Se‐Functionalized Small Molecule Acceptors Achieve Over 19% Efficiency

Dimerized small molecular acceptors: Regulation of dimer conformation realizes binary organic solar cells with highly comprehensive performance

Non‐Resonant Barrier Excitation in Conjugated Aromatic Ligand‐Modified Perovskite Quantum Dots Enables a High Quantum Efficiency

Simple‐Structured Acceptor with Highly Interconnected Electron‐Transport Pathway Enables High‐Efficiency Organic Solar Cells

Highly Luminescent Phase-Stable Hybrid Manganese Halides for Efficient X-ray Imaging

Interactive effects of hyperparameter optimization techniques and data characteristics on the performance of machine learning algorithms for building energy metamodeling

Highlights of mainstream solar cell efficiencies in 2023

19.7% efficiency binary organic solar cells achieved by selective core fluorination of nonfullerene electron acceptors

FENG LIU Information

University

Position

Associate Professor

Citations(all)

48629

Citations(since 2020)

33921

Cited By

28515

hIndex(all)

114

hIndex(since 2020)

98

i10Index(all)

480

i10Index(since 2020)

432

Email

University Profile Page

Google Scholar

FENG LIU Skills & Research Interests

Polymer physics

Synchrotron X-ray techniques

Morphology

Organic semiconductors

Electronic devices

Top articles of FENG LIU

3D Crystal Framework Regulation Enables Se‐Functionalized Small Molecule Acceptors Achieve Over 19% Efficiency

Advanced Energy Materials

2024/3/10

Dimerized small molecular acceptors: Regulation of dimer conformation realizes binary organic solar cells with highly comprehensive performance

Nano Energy

2024/3/1

Non‐Resonant Barrier Excitation in Conjugated Aromatic Ligand‐Modified Perovskite Quantum Dots Enables a High Quantum Efficiency

Laser & Photonics Reviews

2023/12/15

Simple‐Structured Acceptor with Highly Interconnected Electron‐Transport Pathway Enables High‐Efficiency Organic Solar Cells

Advanced Materials

2024/2/19

Highly Luminescent Phase-Stable Hybrid Manganese Halides for Efficient X-ray Imaging

Crystal Growth & Design

2024/2/19

Interactive effects of hyperparameter optimization techniques and data characteristics on the performance of machine learning algorithms for building energy metamodeling

Case Studies in Thermal Engineering

2024/2/12

Highlights of mainstream solar cell efficiencies in 2023

Frontiers in Energy

2024/2/10

19.7% efficiency binary organic solar cells achieved by selective core fluorination of nonfullerene electron acceptors

Joule

2024/1/30

Stable Inorganic Colloidal Tin and Tin–Lead Perovskite Nanocrystals with Ultralong Carrier Lifetime via Sn (IV) Control

Journal of the American Chemical Society

2024/1/25

Nonfullerene Acceptor Featuring Unique Self‐Regulation Effect for Organic Solar Cells with 19% Efficiency

Angewandte Chemie

2024/1/15

Moisture‐Insensitive, Phase‐Stable Indium‐Based Metal Halides and Their Light‐Emitting Applications

Advanced Optical Materials

2024/1

High ion exchange capacity perfluorosulfonic acid resine proton exchange membrane for high temperature applications in polymer electrolyte fuel cells

Journal of Power Sources

2024/5/15

Inhibition and Disaggregation Effect of Flavonoid-derived Carbonized Polymer Dots on Protein Amyloid Aggregation

Colloids and Surfaces B: Biointerfaces

2024/4/25

Decreasing exciton dissociation rates for reduced voltage losses in organic solar cells

Nature Communications

2024/3/27

High Open‐Circuit Voltage Organic Solar Cells with 19.2% Efficiency Enabled by Synergistic Side‐Chain Engineering

Advanced Materials

2024/3/27

Surface Passivation toward Multiple Inherent Dangling Bonds in Indium Phosphide Quantum Dots

Inorganic Chemistry

2024/3/25

Simultaneous Regulation of the Mechanical/Osteogenic Capacity of Brushite Calcium Phosphate Cement by Incorporating with Poly (ethylene glycol) Dicarboxylic Acid

ACS Biomaterials Science & Engineering

2024/3/11

The role of processing solvent on morphology optimization for slot-die printed organic photovoltaics

Chinese Journal of Polymer Science

2023/6

Efficient ternary organic solar cells enabled by asymmetric nonfullerene electron acceptor with suppressed nonradiative recombination

Chemical Engineering Journal

2023/5/15

Mastering morphology of non-fullerene acceptors towards long-term stable organic solar cells

Nature communications

2023/5/10

See List of Professors in FENG LIU University(Shanghai Jiao Tong University)

Co-Authors

academic-engine