Fengying Zhang

About Fengying Zhang

Fengying Zhang, With an exceptional h-index of 13 and a recent h-index of 12 (since 2020), a distinguished researcher at Lunds Universitet,

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

Ruthenium-induced hydrolysis effect on Fe2O3 nanoarrays for high-performance electrochemical nitrate reduction to ammonia

Exploration of ultrafast dynamic processes in photocatalysis: advances and challenges

Vacancy‐Mediated Control of Local Electronic Structure for High‐Efficiency Electrocatalytic Conversion of N2 to NH3 (Small 17/2024)

Dual charge-accepting engineering modified AgIn5S8/CdS quantum dots for efficient photocatalytic hydrogen evolution overall H2S splitting

Revealing the importance of hole transfer: Boosting photocatalytic hydrogen evolution by delicate modulation of photogenerated holes

Boosting charge-transfer in tuned Au nanoparticles on defect-rich TiO2 nanosheets for enhancing nitrogen electroreduction to ammonia production

Self‐Supported Pd Nanorod Arrays for High‐Efficient Nitrate Electroreduction to Ammonia

Enhanced localized electron density from PdCu nanoparticle loading on a defective TiO 2 support for selective nitrate electroreduction to ammonia

Fengying Zhang Information

University

Position

___

Citations(all)

832

Citations(since 2020)

739

Cited By

389

hIndex(all)

13

hIndex(since 2020)

12

i10Index(all)

15

i10Index(since 2020)

13

Email

University Profile Page

Google Scholar

Top articles of Fengying Zhang

Ruthenium-induced hydrolysis effect on Fe2O3 nanoarrays for high-performance electrochemical nitrate reduction to ammonia

Applied Catalysis B: Environment and Energy

2024/8/15

Exploration of ultrafast dynamic processes in photocatalysis: advances and challenges

2024/4/16

Vacancy‐Mediated Control of Local Electronic Structure for High‐Efficiency Electrocatalytic Conversion of N2 to NH3 (Small 17/2024)

Small

2024/4

Dual charge-accepting engineering modified AgIn5S8/CdS quantum dots for efficient photocatalytic hydrogen evolution overall H2S splitting

Applied Catalysis B: Environmental

2023/9/5

Revealing the importance of hole transfer: Boosting photocatalytic hydrogen evolution by delicate modulation of photogenerated holes

ACS Catalysis

2023/6/6

Boosting charge-transfer in tuned Au nanoparticles on defect-rich TiO2 nanosheets for enhancing nitrogen electroreduction to ammonia production

Journal of Colloid and Interface Science

2023/4/15

Self‐Supported Pd Nanorod Arrays for High‐Efficient Nitrate Electroreduction to Ammonia

Small

2023/3

Enhanced localized electron density from PdCu nanoparticle loading on a defective TiO 2 support for selective nitrate electroreduction to ammonia

Journal of Materials Chemistry A

2023

Efficient carrier transfer induced by Au nanoparticles for photoelectrochemical nitrogen reduction

Sustainable Energy & Fuels

2023

In Situ Growth of Fe2O3 Nanorod Arrays on Carbon Cloth with Rapid Charge Transfer for Efficient Nitrate Electroreduction to Ammonia

ACS Applied Materials & Interfaces

2022/10/25

Inorganic ligands-mediated hole attraction and surface structural reorganization in InP/ZnS QD photocatalysts studied via ultrafast visible and midinfrared …

Science China Materials

2022/9

CsPbBr3纳米晶微观形貌非依赖的线性吸收截面

Science China Materials

2021/6

Microscopic morphology independence in linear absorption cross-section of CsPbBr3 nanocrystals

Science China Materials

2021/1

Molecular engineering of highly efficient dopant-free spiro-type hole transporting materials for perovskite solar cells

Solar Energy Materials and Solar Cells

2020/8/1

Effect of synthesis methods on photoluminescent properties for CsPbBr3 nanocrystals: Hot injection method and conversion method

Journal of Luminescence

2020/4/1

Highly value-added utilization of H 2 S in Na 2 SO 3 solution over Ca–CdS nanocrystal photocatalysts

Chemical Communications

2020

See List of Professors in Fengying Zhang University(Lunds Universitet)