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D-Index
49
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8556
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14826
National Ranking
2304

Overview

Xiaole Weng is a researcher affiliated with Zhejiang University in China, focusing primarily on materials science and engineering. Their research contributions span subfields such as materials chemistry, catalysis, renewable energy, sustainability, environmental science, mechanical engineering, and biomedical engineering.

The scientist has published extensively on various topics related to catalytic processes and nanomaterials. Key areas of research include catalytic processes in materials science, catalysis and oxidation reactions, advanced photocatalysis techniques, environmental remediation with nanomaterials, nanomaterials for catalytic reactions, electrocatalysts for energy conversion, and industrial gas emission control.

Recent publications by Xiaole Weng reflect an engagement with heterogeneous catalysis and environmental applications. Notable papers include:

  • "Vacancy-defect semiconductor quantum dots induced an S-scheme charge transfer pathway in 0D/2D structures under visible-light irradiation" (2022, Applied Catalysis B: Environmental)
  • "Development of a multi-active center catalyst in mediating the catalytic destruction of chloroaromatic pollutants: A combined experimental and theoretical study" (2020, Applied Catalysis B: Environmental)
  • "V2O5-WO3/TiO2 Catalyst for Efficient Synergistic Control of NOx and Chlorinated Organics: Insights into the Arsenic Effect" (2021, Environmental Science & Technology)
  • "Tribocatalysis of homogeneous material with multi-size granular distribution for degradation of organic pollutants" (2022, Journal of Colloid and Interface Science)
  • "Unveiling the secondary pollution in the catalytic elimination of chlorinated organics: The formation of dioxins" (2020, Chinese Chemical Letters)

Xiaole Weng frequently collaborates with a number of researchers, including Zhongbiao Wu, Yuetan Su, Hanfeng Lu, Renna Li, and Qingjie Meng. These collaborations have contributed to a broad publication record, extending across several reputable journals.

Weng's work has been published predominantly in the following scientific venues:

  • Environmental Science & Technology
  • Journal of Environmental Sciences
  • SSRN Electronic Journal
  • Applied Catalysis B: Environmental
  • ACS Applied Materials & Interfaces

The main fields associated with Weng's research are:

  • Materials Science
  • Engineering

And the encompassed subfields include:

  • Materials Chemistry
  • Catalysis
  • Renewable Energy, Sustainability and the Environment
  • Mechanical Engineering
  • Biomedical Engineering

The range of topics covered by their research addresses various catalytic methods and environmental technologies, reflecting a multidisciplinary approach to addressing challenges related to pollution control and advanced materials development.

Best Publications

  • Continuous Hydrothermal Synthesis of Inorganic Nanoparticles: Applications and Future Directions

    Jawwad A. Darr;Jingyi Zhang;Neel M. Makwana;Xiaole Weng

  • Catalytic Oxidation of Chlorobenzene over MnxCe1–xO2/HZSM-5 Catalysts: A Study with Practical Implications

    Xiaole Weng;Pengfei Sun;Yu Long;Qingjie Meng

  • The enhanced performance of ceria with surface sulfation for selective catalytic reduction of NO by NH3

    Tingting Gu;Yue Liu;Xiaole Weng;Haiqiang Wang

  • The role of cerium in the improved SO2 tolerance for NO reduction with NH3 over Mn-Ce/TiO2 catalyst at low temperature

    Ruiben Jin;Yue Liu;Yan Wang;Wanglai Cen

  • DRIFT Studies on the Selectivity Promotion Mechanism of Ca-Modified Ce-Mn/TiO2 Catalysts for Low-Temperature NO Reduction with NH3

    Yue Liu;Tingting Gu;Xiaole Weng;Yan Wang

  • Mechanism study on catalytic oxidation of chlorobenzene over MnxCe1-xO2/H-ZSM5 catalysts under dry and humid conditions

    Pengfei Sun;Wanglong Wang;Xiaoxia Dai;Xiaole Weng

  • Catalytic Oxidation of Chlorinated Organics over Lanthanide Perovskites: Effects of Phosphoric Acid Etching and Water Vapor on Chlorine Desorption Behavior

    Xiaole Weng;Qingjie Meng;Jiajia Liu;Weiyu Jiang

  • Promoting effect of calcium doping on the performances of MnOx/TiO2 catalysts for NO reduction with NH3 at low temperature

    Tingting Gu;Ruiben Jin;Yue Liu;Hongfeng Liu

  • Synergistic Elimination of NOx and Chloroaromatics on a Commercial V2O5-WO3/TiO2 Catalyst: Byproduct Analyses and the SO2 Effect.

    Weiyu Jiang;Yulei Yu;Feng Bi;Pengfei Sun

  • A theoretic insight into the catalytic activity promotion of CeO2 surfaces by Mn doping

    Wanglai Cen;Yue Liu;Zhongbiao Wu;Haiqiang Wang

  • Alkali Potassium Induced HCl/CO2 Selectivity Enhancement and Chlorination Reaction Inhibition for Catalytic Oxidation of Chloroaromatics

    Pengfei Sun;Wanglong Wang;Xiaole Weng;Xiaoxia Dai

  • Efficient Elimination of Chlorinated Organics on a Phosphoric Acid Modified CeO2 Catalyst: A Hydrolytic Destruction Route

    Xiaoxia Dai;Xinwei Wang;Yunpeng Long;Samuel Pattisson

  • Structural modification of LaCoO3 perovskite for oxidation reactions: The synergistic effect of Ca2+ and Mg2+ co-substitution on phase formation and catalytic performance

    Jingyi Zhang;Dongdong Tan;Qingjie Meng;Xiaole Weng

  • Deactivation mechanism of Ce/TiO2 selective catalytic reduction catalysts by the loading of sodium and calcium salts

    Haiqiang Wang;Xiongbo Chen;Xiongbo Chen;Shan Gao;Zhongbiao Wu

  • DRIFT studies on promotion mechanism of H3PW12O40 in selective catalytic reduction of NO with NH3.

    Xiaole Weng;Xiaoxia Dai;Qingshan Zeng;Yue Liu

  • Active Oxygen Species in Lan+1NinO3n+1 Layered Perovskites for Catalytic Oxidation of Toluene and Methane

    Qingjie Meng;Wanglong Wang;Xiaole Weng;Yue Liu

  • Catalyst performance and mechanism of catalytic combustion of dichloromethane (CH2Cl2) over Ce doped TiO2.

    Shuang Cao;Haiqiang Wang;Feixiang Yu;Mengpa Shi

  • Mechanisms and reaction pathways for simultaneous oxidation of NOx and SO2 by ozone determined by in situ IR measurements

    Chenglang Sun;Nan Zhao;Zhuokai Zhuang;Haiqiang Wang

  • Development of a multi-active center catalyst in mediating the catalytic destruction of chloroaromatic pollutants: A combined experimental and theoretical study

    Pengfei Sun;Shuaiying Zhai;Jingkun Chen;Jialuo Yuan

  • Lanthanide perovskite catalysts for oxidation of chloroaromatics: Secondary pollution and modifications

    Wang Long Wang;Qingjie Meng;Yehui Xue;Xiaole Weng

  • Ceria supported on sulfated zirconia as a superacid catalyst for selective catalytic reduction of NO with NH3.

    Shan Gao;Xiongbo Chen;Haiqiang Wang;Jiansong Mo

Frequent Co-Authors

Zhongbiao Wu
Zhongbiao Wu Zhejiang University
Yue Liu
Yue Liu Zhejiang University
Haiqiang Wang
Haiqiang Wang Zhejiang University
Jawwad A. Darr
Jawwad A. Darr University College London
Stephen J. Skinner
Stephen J. Skinner Imperial College London
Jonathan C. Knowles
Jonathan C. Knowles University College London
Jie Liu
Jie Liu Duke University
Ihtesham Ur Rehman
Ihtesham Ur Rehman Lancaster University
Xue Z. Wang
Xue Z. Wang University of Leeds
Fan Dong
Fan Dong University of Electronic Science and Technology of China

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