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Overview

Chun Feng is affiliated with the University of Science and Technology Beijing in China and specializes in research within the fields of Materials Science and Engineering. Their work spans numerous subfields, including Materials Chemistry, Organic Chemistry, Mechanical Engineering, Biomaterials, and Polymers and Plastics.

The scientist's main research topics cover advanced polymer synthesis and characterization, hydrogen embrittlement and corrosion behaviors in metals, corrosion behavior and inhibition, supramolecular self-assembly in materials, covalent organic framework applications, conducting polymers and applications, and titanium alloys microstructure and properties.

Chun Feng has contributed to multiple papers, some of which include:

  • Continuous and Segmented Semiconducting Fiber-like Nanostructures with Spatially Selective Functionalization by Living Crystallization-Driven Self-Assembly (2020, Angewandte Chemie International Edition)
  • π-Conjugated-polymer-based nanofibers through living crystallization-driven self-assembly: preparation, properties and applications (2021, Chemical Communications)
  • Simultaneous determination of nitrate, chemical oxygen demand and turbidity in water based on UV-Vis absorption spectrometry combined with interval analysis (2020, Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy)
  • Uniform Continuous and Segmented Nanofibers Containing a π-Conjugated Oligo(p-phenylene ethynylene) Core via "Living" Crystallization-Driven Self-Assembly: Importance of Oligo(p-phenylene ethynylene) Chain Length (2020, Macromolecules)
  • Radical polymer-grafted carbon nanotubes as high-performance cathode materials for lithium organic batteries with promoted n-/p-type redox reactions (2020, Journal of Power Sources)

The frequent publication venues where Chun Feng has contributed include:

  • Materials Science Forum
  • Macromolecules
  • Polymer Chemistry
  • SSRN Electronic Journal
  • Journal of Physics Conference Series

Frequent collaborators associated with Chun Feng's work are Xiaoyu Huang, Guolin Lu, Lijuan Zhu, Mitchell A. Winnik, and Li Juan Zhu. Collaborations with these authors represent a significant portion of their coauthored research output.

Best Publications

  • Well-defined graft copolymers: from controlled synthesis to multipurpose applications

    Chun Feng;Yongjun Li;Dong Yang;Jianhua Hu

  • 3D-printed bioceramic scaffolds: From bone tissue engineering to tumor therapy.

    Hongshi Ma;Chun Feng;Jiang Chang;Chengtie Wu

  • Polymer Brushes: Efficient Synthesis and Applications

    Chun Feng;Xiaoyu Huang

  • 3D printing of Haversian bone-mimicking scaffolds for multicellular delivery in bone regeneration.

    Meng Zhang;Rongcai Lin;Xin Wang;Jianmin Xue

  • Monodisperse Fiber-like Micelles of Controlled Length and Composition with an Oligo(p-phenylenevinylene) Core via “Living” Crystallization-Driven Self-Assembly

    Daliao Tao;Chun Feng;Yinan Cui;Xian Yang

  • 3D-printed scaffolds with synergistic effect of hollow-pipe structure and bioactive ions for vascularized bone regeneration.

    Wenjie Zhang;Chun Feng;Guangzheng Yang;Guanglong Li

  • 3D Printing of Lotus Root‐Like Biomimetic Materials for Cell Delivery and Tissue Regeneration

    Chun Feng;Wenjie Zhang;Cuijun Deng;Guanglong Li

  • A versatile platform for precise synthesis of asymmetric molecular brush in one shot

    Binbin Xu;Chun Feng;Xiaoyu Huang

  • Enhancing Photodynamic Therapy Efficacy by Using Fluorinated Nanoplatform

    Yurong Que;Yajing Liu;Wei Tan;Chun Feng

  • PNIPAM‐b‐(PEA‐g‐PDMAEA) double‐hydrophilic graft copolymer: Synthesis and its application for preparation of gold nanoparticles in aqueous media

    Chun Feng;Zhong Shen;Yongjun Li;Lina Gu

  • Mesoporous bioactive glass nanolayer-functionalized 3D-printed scaffolds for accelerating osteogenesis and angiogenesis

    Yali Zhang;Yali Zhang;Lunguo Xia;Dong Zhai;Mengchao Shi

  • Spin-Casting Polymer Brush Films for Stimuli-Responsive and Anti-Fouling Surfaces.

    Binbin Xu;Chun Feng;Jianhua Hu;Ping Shi

  • PAA-g-PPO Amphiphilic Graft Copolymer: Synthesis and Diverse Micellar Morphologies

    Yaogong Li;Yaqin Zhang;Dong Yang;Yongjun Li

  • Retraction: 3D Printing of Bilineage Constructive Biomaterials for Bone and Cartilage Regeneration

    Cuijun Deng;Qingqiang Yao;Chun Feng;Jiayi Li

  • Lithium-containing biomaterials stimulate bone marrow stromal cell-derived exosomal miR-130a secretion to promote angiogenesis.

    Lu Liu;Yaqin Liu;Chun Feng;Jiang Chang

  • Convenient Synthesis of PtBA-g-PMA Well-Defined Graft Copolymer with Tunable Grafting Density

    Yaqin Zhang;Zhong Shen;Dong Yang;Chun Feng

  • Synthesis of well‐defined amphiphilic graft copolymer bearing poly(2‐acryloyloxyethyl ferrocenecarboxylate) side chains via successive SET‐LRP and ATRP

    Chun Feng;Zhong Shen;Dong Yang;Yaogong Li

  • Thermoresponsive Homopolymer Tunable by pH and CO2

    Xue Jiang;Chun Feng;Guolin Lu;Xiaoyu Huang

  • Poly(acrylic acid)-graft-poly(N-vinylcaprolactam): a novel pH and thermo dual-stimuli responsive system

    Xiuyu Jiang;Guolin Lu;Chun Feng;Yongjun Li

  • PMHDO-g-PEG Double-Bond-Based Amphiphilic Graft Copolymer: Synthesis and Diverse Self-Assembled Nanostructures

    Xiaohuan Zhang;Zhong Shen;Chun Feng;Dong Yang

Frequent Co-Authors

Jianhua Hu
Jianhua Hu Fudan University
Yongjun Li
Yongjun Li Chinese Academy of Sciences
Dong Yang
Dong Yang Fudan University
Mitchell A. Winnik
Mitchell A. Winnik University of Toronto
Ian Manners
Ian Manners University of Victoria
Patrick Theato
Patrick Theato Karlsruhe Institute of Technology
Gregory D. Scholes
Gregory D. Scholes Princeton University
Gilbert C. Walker
Gilbert C. Walker University of Toronto
Haifeng Gao
Haifeng Gao University of Notre Dame

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