Fagen WANG

About Fagen WANG

Fagen WANG, With an exceptional h-index of 39 and a recent h-index of 34 (since 2020), a distinguished researcher at Jiangsu University, specializes in the field of heterogeneous catalysis.

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

Photo-induced thermal effect on Pt/CeO2 surface for promoting formaldehyde oxidation performance by photothermal catalysis

Review and Outlook of Confined Ni Catalysts for the Dry Reforming of Methane Reaction

Ni-Co Alloy Supported on CeO2 by SiO2 Encapsulation for Dry Reforming of Methane

HCHO oxidation over the δ-MnO2 catalyst: Enhancing oxidative activities of surface lattice oxygen and surface adsorbed oxygen by weakening Mn-O bond

Crystal Facets Engineering of γ-MnO2 catalysts for Remarkable Enhancement of Formaldehyde Removal Efficiency

Corrigendum to" Order-of-magnitude increase in rate of methane dry reforming over Ni/CeO2-SiC catalysts by microwave catalysis"[Appl. Catal. B Environ. 337 (2023) 122927]

Regulating the Pt–MnO2 Interaction and Interface for Room Temperature Formaldehyde Oxidation

Substitutional C and interstitial N in MnO2/NC catalysts enable high performance of formaldehyde oxidation at room temperature

Fagen WANG Information

University

Position

___

Citations(all)

3871

Citations(since 2020)

2975

Cited By

1855

hIndex(all)

39

hIndex(since 2020)

34

i10Index(all)

65

i10Index(since 2020)

64

Email

University Profile Page

Google Scholar

Fagen WANG Skills & Research Interests

heterogeneous catalysis

Top articles of Fagen WANG

Title

Journal

Author(s)

Publication Date

Photo-induced thermal effect on Pt/CeO2 surface for promoting formaldehyde oxidation performance by photothermal catalysis

Applied Surface Science

Jie Xie

Shuo Wang

Fagen Wang

2024/1/30

Review and Outlook of Confined Ni Catalysts for the Dry Reforming of Methane Reaction

Energy & Fuels

Yu Shi

Xiaoyan Tian

Zhiyong Deng

Weidong Shi

Weiqiang Fan

...

2024/1/11

Ni-Co Alloy Supported on CeO2 by SiO2 Encapsulation for Dry Reforming of Methane

Materials Today Communications

Yu Shi

Xiaoyan Tian

Fagen Wang

2024/4/16

HCHO oxidation over the δ-MnO2 catalyst: Enhancing oxidative activities of surface lattice oxygen and surface adsorbed oxygen by weakening Mn-O bond

Fuel

Shuo Wang

Jie Xie

Zhiyong Deng

Mengmeng Wu

Fagen Wang

2023/7/15

Crystal Facets Engineering of γ-MnO2 catalysts for Remarkable Enhancement of Formaldehyde Removal Efficiency

Applied Surface Science

Shuo Wang

Jie Xie

Mengmeng Wu

Fagen Wang

2023/2/21

Corrigendum to" Order-of-magnitude increase in rate of methane dry reforming over Ni/CeO2-SiC catalysts by microwave catalysis"[Appl. Catal. B Environ. 337 (2023) 122927]

Applied Catalysis B: Environmental

Yu Shi

Lei Wang

Mengmeng Wu

Fagen Wang

2023/12

Regulating the Pt–MnO2 Interaction and Interface for Room Temperature Formaldehyde Oxidation

Inorganic Chemistry

Jie Xie

Shuo Wang

Kunfeng Zhao

Mengmeng Wu

Fagen Wang

2023/1/4

Substitutional C and interstitial N in MnO2/NC catalysts enable high performance of formaldehyde oxidation at room temperature

Journal of Environmental Chemical Engineering

Jie Xie

Xiaohan Zhang

Xiaoxin Zhang

Xiaoling Mou

Fagen Wang

2023/12/1

Efficient Cu/CeO2 composites for hydrogen production from photothermal methanol steam reforming: The utility of synergism of photo and thermal catalysis

Fuel

Long Zhao

Mengran Tang

Fagen Wang

Xinping Qiu

2023/1/1

Photothermal Methane Dry Reforming Catalyzed by Multifunctional (Ni–Cu/CeO2)@SiO2 Catalyst

ACS Sustainable Chemistry & Engineering

Lei Wang

Ziliang Pu

Yu Shi

Mengmeng Wu

Weidong Shi

...

2023/11/29

Order-of-magnitude increase in rate of methane dry reforming over Ni/CeO2-SiC catalysts by microwave catalysis

Applied Catalysis B: Environmental

Yu Shi

Lei Wang

Mengmeng Wu

Fagen Wang

2023/11/15

CeO2 Nanorods Decorated with Pt Nanoparticles as Catalysts for Oxidative Elimination of Formaldehyde

ACS Applied Nano Materials

Shuo Wang

Kaihang Han

Zhiyong Deng

Fagen Wang

2022/6/23

Design strategy, synthesis, and mechanism of Ni catalysts for methane dry reforming reaction: recent advances and future perspectives

Energy & Fuels

Lei Wang

Fagen Wang

2022/5/23

Alloying Ni–Cu Nanoparticles Encapsulated in SiO2 Nanospheres for Synergistic Catalysts in CO2 Reforming with Methane Reaction

ACS Applied Materials & Interfaces

Kaihang Han

Shuo Wang

Nan Hu

Weidong Shi

Fagen Wang

2022/5/16

Room temperature HCHO oxidation over the Pt/CeO2 catalysts with different oxygen mobilities by changing ceria shapes

Applied Catalysis A: General

Shuo Wang

Yan Wang

Fagen Wang

2022/1/25

Ni–Cu Alloy Nanoparticles Confined by Physical Encapsulation with SiO2 and Chemical Metal–Support Interaction with CeO2 for Methane Dry Reforming

Inorganic Chemistry

Yu Shi

Kaihang Han

Fagen Wang

2022/9/21

Ni/SiO2 Catalyst Prepared by Strong Electrostatic Adsorption for a Low-Temperature Methane Dry Reforming Reaction

Industrial & Engineering Chemistry Research

Fagen Wang

Kaihang Han

Leilei Xu

Hao Yu

Weidong Shi

2021/2/17

Exploring the influence of nickel precursors on constructing efficient Ni-based CO2 methanation catalysts assisted with in-situ technologies

Applied Catalysis B: Environmental

Xueying Wen

Leilei Xu

Mindong Chen

Yiyu Shi

Chufei Lv

...

2021/11/15

Tuning surface V5+ concentration in M1 phase MoVSbOx catalysts for ethylene production from ethane through oxidative dehydrogenation reaction

Applied Catalysis A: General

Chunyu Xin

Fagen Wang

Guo Qin Xu

2021/1/25

Narrowing band gap energy of CeO2 in (Ni/CeO2)@ SiO2 catalyst for photothermal methane dry reforming

Chemical Engineering Journal

Kaihang Han

Yan Wang

Shuo Wang

Qiying Liu

Zhiyong Deng

...

2021/10/1

See List of Professors in Fagen WANG University(Jiangsu University)