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Engineering and Technology

D-Index
71
Citations
16615
World Ranking
977
National Ranking
183

Overview

Tao Qian is a researcher affiliated with Soochow University in China, specializing in engineering with particular emphasis on electrical and electronic engineering, renewable energy, sustainability and the environment, materials chemistry, catalysis, and mechanical engineering. Their scholarly work spans a range of applied scientific fields, focusing on topics related to energy conversion and storage technologies.

The main topics covered in their research include ammonia synthesis and nitrogen reduction, advanced battery materials and technologies, advancements in battery materials, electrocatalysts for energy conversion, advanced photocatalysis techniques, and advanced battery technologies research. These research foci reflect significant engagement with sustainable energy solutions and materials innovation.

The scientist's recent publications demonstrate contributions to both fundamental and applied areas of chemistry and materials science. Notable papers include:

  • "Proton-filtering covalent organic frameworks with superior nitrogen penetration flux promote ambient ammonia synthesis," 2021, Nature Catalysis
  • "Salting-out effect promoting highly efficient ambient ammonia synthesis," 2021, Nature Communications
  • "Covalent organic frameworks towards photocatalytic applications: Design principles, achievements, and opportunities," 2022, Coordination Chemistry Reviews
  • "Diminishing Interfacial Turbulence by Colloid-Polymer Electrolyte to Stabilize Zinc Ion Flux for Deep-Cycling Zn Metal Batteries," 2022, Advanced Materials
  • "Unity of Opposites between Soluble and Insoluble Lithium Polysulfides in Lithium-Sulfur Batteries," 2022, Advanced Materials

Throughout their career, Tao Qian has published extensively in several high-impact scientific journals, including:

  • Advanced Functional Materials
  • Chemical Engineering Journal
  • Advanced Materials
  • The Journal of Physical Chemistry Letters
  • Inorganic Chemistry

Collaborations appear frequently in their research output, with their most common coauthors being Chenglin Yan, Mengfan Wang, Jie Liu, Sisi Liu, and Jinqiu Zhou. These collaborations have contributed to a diverse and interdisciplinary body of work.

Best Publications

  • Over 56.55% Faradaic efficiency of ambient ammonia synthesis enabled by positively shifting the reaction potential.

    Mengfan Wang;Sisi Liu;Tao Qian;Jie Liu

  • A Sustainable Route from Biomass Byproduct Okara to High Content Nitrogen-Doped Carbon Sheets for Efficient Sodium Ion Batteries

    Tingzhou Yang;Tao Qian;Mengfan Wang;Xiaowei Shen

  • A New Type of Multifunctional Polar Binder: Toward Practical Application of High Energy Lithium Sulfur Batteries.

    Wei Chen;Wei Chen;Tao Qian;Jie Xiong;Na Xu

  • Lithium anode stable in air for low-cost fabrication of a dendrite-free lithium battery

    Xiaowei Shen;Yutao Li;Tao Qian;Jie Liu

  • A New Hydrophilic Binder Enabling Strongly Anchoring Polysulfides for High-Performance Sulfur Electrodes in Lithium-Sulfur Battery

    Wei Chen;Tianyu Lei;Tao Qian;Weiqiang Lv

  • Proton-filtering covalent organic frameworks with superior nitrogen penetration flux promote ambient ammonia synthesis

    Sisi Liu;Tao Qian;Mengfan Wang;Haoqing Ji

  • Greatly Suppressed Shuttle Effect for Improved Lithium Sulfur Battery Performance through Short Chain Intermediates

    Na Xu;Tao Qian;Xuejun Liu;Jie Liu

  • Facilitating nitrogen accessibility to boron-rich covalent organic frameworks via electrochemical excitation for efficient nitrogen fixation.

    Sisi Liu;Mengfan Wang;Tao Qian;Haoqing Ji

  • Covalent organic frameworks towards photocatalytic applications: Design principles, achievements, and opportunities

    Unknown

  • Dopamine fluorescent sensors based on polypyrrole/graphene quantum dots core/shell hybrids

    Xi Zhou;Peipei Ma;Anqi Wang;Chenfei Yu

  • Salting-out effect promoting highly efficient ambient ammonia synthesis.

    Mengfan Wang;Sisi Liu;Haoqing Ji;Tingzhou Yang

  • Determining the Active Surface Area for Various Platinum Electrodes

    Dong Chen;Qian Tao;Ling Wen Liao;Shao Xiong Liu

  • Active health monitoring of an aircraft wing with an embedded piezoelectric sensor/actuator network: II. Wireless approaches

    Xiaoliang Zhao;Tao Qian;Gang Mei;Chiman Kwan

  • Diminishing Interfacial Turbulence by Colloid‐Polymer Electrolyte to Stabilize Zinc Ion Flux for Deep‐Cycling Zn Metal Batteries

    Unknown

  • Interconnected three-dimensional V2O5/polypyrrole network nanostructures for high performance solid-state supercapacitors

    Tao Qian;Na Xu;Jinqiu Zhou;Tingzhou Yang

  • Ultrasensitive dopamine sensor based on novel molecularly imprinted polypyrrole coated carbon nanotubes

    Tao Qian;Chenfei Yu;Xi Zhou;Peipei Ma

  • In situ optical spectroscopy characterization for optimal design of lithium–sulfur batteries

    Li Zhang;Tao Qian;Xingyu Zhu;Zhongli Hu

  • Facilitated Oxygen Chemisorption in Heteroatom-Doped Carbon for Improved Oxygen Reaction Activity in All-Solid-State Zinc–Air Batteries

    Sisi Liu;Mengfan Wang;Xinyi Sun;Na Xu

  • Observation of Fermi arc spin texture in TaAs

    Baiqing Lv;Baiqing Lv;Stefan Muff;Stefan Muff;Tian Qian;Zhida Song

  • Unity of Opposites between Soluble and Insoluble Lithium Polysulfides in Lithium–Sulfur Batteries

    Unknown

  • Modulating the d-band center of boron doped single-atom sites to boost the oxygen reduction reaction

    He Sun;Mengfan Wang;Xinchuan Du;Yu Jiao

  • High-Safety All-Solid-State Lithium-Metal Battery with High-Ionic-Conductivity Thermoresponsive Solid Polymer Electrolyte.

    Jinqiu Zhou;Tao Qian;Jie Liu;Mengfan Wang

  • Progress and perspective of organosulfur polymers as cathode materials for advanced lithium-sulfur batteries

    Jie Liu;Mengfan Wang;Na Xu;Tao Qian

  • Au nanoparticles decorated polypyrrole/reduced graphene oxide hybrid sheets for ultrasensitive dopamine detection

    Tao Qian;Chenfei Yu;Xi Zhou;Shishan Wu

  • High Lithium Ion Conductivity LiF/GO Solid Electrolyte Interphase Inhibiting the Shuttle of Lithium Polysulfides in Long‐Life Li–S Batteries

    Xuyan Ni;Tao Qian;Xuejun Liu;Na Xu

  • Molecularly Imprinted Polymer Enables High-Efficiency Recognition and Trapping Lithium Polysulfides for Stable Lithium Sulfur Battery

    Jie Liu;Tao Qian;Mengfan Wang;Xuejun Liu

  • Novel Organophosphate-Derived Dual-Layered Interface Enabling Air-Stable and Dendrite-Free Lithium Metal Anode.

    Xuejun Liu;Jie Liu;Tao Qian;Hongli Chen

Frequent Co-Authors

Chenglin Yan
Chenglin Yan Soochow University
Jie Liu
Jie Liu Duke University
Mengfan Wang
Mengfan Wang Soochow University
Jian Shen
Jian Shen Nanjing Normal University
Jie Xiong
Jie Xiong University of Electronic Science and Technology of China
Federico Rosei
Federico Rosei Institut National de la Recherche Scientifique
Yutao Li
Yutao Li Chinese Academy of Sciences
John B. Goodenough
John B. Goodenough The University of Texas at Austin
Jun Guo
Jun Guo Peking University
Chao Wang
Chao Wang Soochow University

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