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D-Index & Metrics

Chemistry

D-Index
72
Citations
17065
World Ranking
5314
National Ranking
984

Overview

Xiao-Bing Lu is affiliated with Dalian University of Technology in China and has an extensive research record in the fields of chemistry, chemical engineering, and materials science. Their work spans several subfields including organic chemistry, process chemistry and technology, biomaterials, polymers and plastics, and renewable energy, sustainability, and the environment.

The scientist's primary research topics focus on the utilization of carbon dioxide in catalysis, biodegradable polymer synthesis and properties, organometallic complex synthesis and catalysis, asymmetric hydrogenation and catalysis, CO2 reduction techniques and catalysts, synthetic organic chemistry methods, and chemical synthesis and reactions.

Recent papers linked to Xiao-Bing Lu's research include:

  • Recent advances in electrochemical carboxylation reactions using carbon dioxide, 2021, Green Chemical Engineering
  • Chemical Synthesis of CO2-Based Polymers with Enhanced Thermal Stability and Unexpected Recyclability from Biosourced Monomers, 2021, ACS Catalysis
  • Synthesis of Nonalternating Polyketones Using Cationic Diphosphazane Monoxide-Palladium Complexes, 2021, Journal of the American Chemical Society
  • Copolymerization Involving Sulfur-Containing Monomers, 2023, Chemical Reviews
  • Efficient and Selective Chemical Recycling of CO2-Based Alicyclic Polycarbonates via Catalytic Pyrolysis, 2022, Angewandte Chemie International Edition

Frequent co-authors in their research collaborations include:

  • Ye Liu
  • Wei-Min Ren
  • Bai-Hao Ren
  • Tian-Jun Yue
  • Shi-Yu Chen

Xiao-Bing Lu often publishes in journals such as:

  • Angewandte Chemie International Edition
  • Macromolecules
  • Angewandte Chemie
  • Journal of the American Chemical Society
  • ACS Catalysis

Best Publications

  • Cobalt catalysts for the coupling of CO2 and epoxides to provide polycarbonates and cyclic carbonates

    Xiao-Bing Lu;Donald J. Darensbourg

  • CO2 Copolymers from Epoxides: Catalyst Activity, Product Selectivity, and Stereochemistry Control

    Xiao-Bing Lu;Wei-Min Ren;Guang-Peng Wu

  • Design of highly active binary catalyst systems for CO2/epoxide copolymerization: polymer selectivity, enantioselectivity, and stereochemistry control.

    Xiao-Bing Lu;Lei Shi;Yi-Ming Wang;Rong Zhang

  • CO2 Adducts of N-Heterocyclic Carbenes: Thermal Stability and Catalytic Activity toward the Coupling of CO2 with Epoxides

    Hui Zhou;Wen-Zhen Zhang;Cui-Hua Liu;Jing-Ping Qu

  • Highly active, binary catalyst systems for the alternating copolymerization of CO2 and epoxides under mild conditions.

    Xiao-Bing Lu;Yi Wang

  • Fast CO2 sequestration, activation, and catalytic transformation using N-heterocyclic olefins.

    Yan-Bo Wang;Yi-Ming Wang;Wen-Zhen Zhang;Xiao-Bing Lu

  • Mechanistic Aspects of the Copolymerization of CO2 with Epoxides Using a Thermally Stable Single-Site Cobalt(III) Catalyst

    Wei-Min Ren;Zhong-Wen Liu;Ye-Qian Wen;Rong Zhang

  • Asymmetric Catalysis with CO<sub>2</sub>: Direct Synthesis of Optically Active Propylene Carbonate from Racemic Epoxides

    Unknown

  • CO2 Adducts of Phosphorus Ylides: Highly Active Organocatalysts for Carbon Dioxide Transformation

    Hui Zhou;Guo-Xu Wang;Wen-Zhen Zhang;Xiao-Bing Lu

  • Highly Active, Bifunctional Co(III)-Salen Catalyst for Alternating Copolymerization of CO2 with Cyclohexene Oxide and Terpolymerization with Aliphatic Epoxides

    Wei-Min Ren;Xiao Zhang;Ye Liu;Jian-Feng Li

  • Ligand-free Ag(I)-catalyzed carboxylation of terminal alkynes with CO2.

    Xiao Zhang;Wen-Zhen Zhang;Xiang Ren;Lin-Lin Zhang

  • N-Heterocyclic carbene functionalized MCM-41 as an efficient catalyst for chemical fixation of carbon dioxide

    Hui Zhou;Yi-Ming Wang;Wen-Zhen Zhang;Jing-Ping Qu

  • Completely Recyclable Monomers and Polycarbonate: Approach to Sustainable Polymers

    Ye Liu;Hui Zhou;Jia-Zhi Guo;Wei-Min Ren

  • Asymmetric copolymerization of CO2 with meso-epoxides mediated by dinuclear cobalt(III) complexes: unprecedented enantioselectivity and activity.

    Unknown

  • Perfectly Alternating Copolymerization of CO2 and Epichlorohydrin Using Cobalt(III)-Based Catalyst Systems

    Guang-Peng Wu;Sheng-Hsuan Wei;Wei-Min Ren;Xiao-Bing Lu

  • Chemical fixation of carbon dioxide to cyclic carbonates under extremely mild conditions with highly active bifunctional catalysts

    Xiao-Bing Lu;Ying-Ju Zhang;Bin Liang;Xiao Li

  • Asymmetric Alternating Copolymerization and Terpolymerization of Epoxides with Carbon Dioxide at Mild Conditions

    Lei Shi;Xiao-Bing Lu;Rong Zhang;Xiao-Jun Peng

  • Highly active electrophile–nucleophile catalyst system for the cycloaddition of CO2 to epoxides at ambient temperature

    Xiao-Bing Lu;Ying-Ju Zhang;Kun Jin;Li-Mei Luo

  • Enhanced asymmetric induction for the copolymerization of CO2 and cyclohexene oxide with unsymmetric enantiopure salenCo(III) complexes: synthesis of crystalline CO2-based polycarbonate

    Guang-Peng Wu;Wei-Min Ren;Yi Luo;Bo Li

  • Cu(I)-Catalyzed Carboxylative Coupling of Terminal Alkynes, Allylic Chlorides, and CO2

    Wen-Zhen Zhang;Wen-Jie Li;Xiao Zhang;Hui Zhou

  • Tandem metal-coordination copolymerization and organocatalytic ring-opening polymerization via water to synthesize diblock copolymers of styrene oxide/CO2 and lactide.

    Guang-Peng Wu;Donald J. Darensbourg;Xiao-Bing Lu

  • Highly Selective Synthesis of CO2 Copolymer from Styrene Oxide

    Guang-Peng Wu;Sheng-Hsuan Wei;Xiao-Bing Lu;Wei-Min Ren

Frequent Co-Authors

Donald J. Darensbourg
Donald J. Darensbourg Texas A&M University
Licheng Sun
Licheng Sun Royal Institute of Technology
Shouke Yan
Shouke Yan Beijing University of Chemical Technology
Paul F. Nealey
Paul F. Nealey University of Chicago
Zhi-Kang Xu
Zhi-Kang Xu Zhejiang University
Xiaojun Peng
Xiaojun Peng Dalian University of Technology
Geoffrey W. Coates
Geoffrey W. Coates Cornell University

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