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Materials Science

D-Index
68
Citations
15499
World Ranking
4900
National Ranking
1510

Overview

Jun Nie is a researcher affiliated with Beijing University of Chemical Technology in China. Their research primarily spans the fields of Chemistry, Materials Science, and Engineering, with a strong emphasis on subfields such as Organic Chemistry, Materials Chemistry, Biomedical Engineering, Biomaterials, and Polymers and Plastics.

The main topics covered in Jun Nie's work include:

  • Photopolymerization techniques and applications
  • Advanced Polymer Synthesis and Characterization
  • Photochromic and Fluorescence Chemistry
  • Advanced Sensor and Energy Harvesting Materials
  • Electrospun Nanofibers in Biomedical Applications
  • Wound Healing and Treatments
  • Additive Manufacturing and 3D Printing Technologies

Jun Nie's recent published papers feature a range of applications across materials science and biomedical engineering, including:

  • Photo-curing 3D printing technique and its challenges, 2020, Bioactive Materials
  • Multilayer electrospun nanofibrous membranes with antibacterial property for air filtration, 2020, Applied Surface Science
  • A natural polymer-based porous sponge with capillary-mimicking microchannels for rapid hemostasis, 2020, Acta Biomaterialia
  • Bifunctional Smart Hydrogel Dressing with Strain Sensitivity and NIR-Responsive Performance, 2021, ACS Applied Materials & Interfaces
  • Smart Polycationic Hydrogel Dressing for Dynamic Wound Healing, 2022, Small

Frequent co-authors in Jun Nie's publications include:

  • Xiaoqun Zhu
  • Guiping Ma
  • Tanlong Xue
  • Fang Sun
  • Guoqiang Lu

Jun Nie has published extensively in several scientific journals. The venues with the highest number of their publications are:

  • Journal of Photochemistry and Photobiology A Chemistry
  • Progress in Organic Coatings
  • European Polymer Journal
  • Macromolecular Rapid Communications
  • ACS Applied Materials & Interfaces

Best Publications

  • Structure and swelling of poly(acrylic acid) hydrogels: effect of pH, ionic strength, and dilution on the crosslinked polymer structure

    Jeannine E. Elliott;Mara Macdonald;Jun Nie;Christopher N. Bowman;Christopher N. Bowman

  • Electrospun Water-Soluble Carboxyethyl Chitosan/Poly(vinyl alcohol) Nanofibrous Membrane as Potential Wound Dressing for Skin Regeneration

    Yingshan Zhou;Dongzhi Yang;Xiangmei Chen;Qiang Xu

  • Preparation of gelatin/PVA nanofibers and their potential application in controlled release of drugs

    Dongzhi Yang;Yanning Li;Jun Nie

  • Alginate–chitosan/hydroxyapatite polyelectrolyte complex porous scaffolds: preparation and characterization

    Jing Han;Ziyou Zhou;Ruixue Yin;Dongzhi Yang

  • Functionalized chitosan electrospun nanofiber membranes for heavy-metal removal

    Dongxue Yang;Lingfeng Li;Binling Chen;Shuxian Shi

  • Preparation and characterization of water-soluble N-alkylated chitosan

    Guiping Ma;Dongzhi Yang;Yingshan Zhou;Ming Xiao

  • Electrospun sodium alginate/poly(ethylene oxide) core-shell nanofibers scaffolds potential for tissue engineering applications.

    Guiping Ma;Dawei Fang;Yang Liu;Xiaodan Zhu

  • Electrospun Core−Shell Structure Nanofibers from Homogeneous Solution of Poly(ethylene oxide)/Chitosan

    Jian-Feng Zhang;Dong-Zhi Yang;Fei Xu;Zi-Ping Zhang

  • Paclitaxel loaded electrospun porous nanofibers as mat potential application for chemotherapy against prostate cancer

    Guiping Ma;Yang Liu;Cheng Peng;Dawei Fang

  • Bimetal-organic frameworks/polymer core-shell nanofibers derived heteroatom-doped carbon materials as electrocatalysts for oxygen reduction reaction

    Qijian Niu;Junxia Guo;Binling Chen;Binling Chen;Jun Nie

  • Effect of intermolecular interaction on electrospinning of sodium alginate

    Dawei Fang;Yang Liu;Shan Jiang;Jun Nie

  • Preparation of PVDF/PVP core–shell nanofibers mats via homogeneous electrospinning

    Meice Wang;Dawei Fang;Nannan Wang;Shan Jiang

  • Biodegradable core-shell electrospun nanofibers based on PLA and γ-PGA for wound healing

    Yue Fang;Xianqi Zhu;Na Wang;Xuan Zhang

  • Electrodeposition of alginate/chitosan layer-by-layer composite coatings on titanium substrates

    Zhiliang Wang;Xueqin Zhang;Juming Gu;Haitao Yang

  • Chitosan/polyethylene glycol diacrylate films as potential wound dressing material.

    Xiaodan Zhang;Dongzhi Yang;Jun Nie

  • Effects of solution properties and electric field on the electrospinning of hyaluronic acid

    Yang Liu;Guiping Ma;Dawei Fang;Juan Xu

  • Synthesize and characterization of organic-soluble acylated chitosan

    Guiping Ma;Dongzhi Yang;John F. Kennedy;Jun Nie

  • Synthesis of furan derivative as LED light photoinitiator: One-pot, low usage, photobleaching for light color 3D printing

    Jingfang Li;Yajuan Hao;Meijuan Zhong;Liqun Tang

  • Robust Physically Linked Double-Network Ionogel as a Flexible Bimodal Sensor

    Jingxian Sun;Guoqiang Lu;Jiulei Zhou;Yixin Yuan

  • A natural polymer-based porous sponge with capillary-mimicking microchannels for rapid hemostasis

    Liangyu Wang;Yuanyuan Zhong;Chuntong Qian;Dongzhi Yang

  • Multilayer electrospun nanofibrous membranes with antibacterial property for air filtration

    Lu Zhang;Lingfeng Li;Lincai Wang;Jun Nie

  • Dextran and gelatin based photocrosslinkable tissue adhesive.

    Tao Wang;Jun Nie;Dongzhi Yang

  • Development of highly reactive mono-(meth)acrylates as reactive diluents for dimethacrylate-based dental resin systems.

    Hui Lu;Jeffrey W. Stansbury;Jeffrey W. Stansbury;Jun Nie;Kathryn A. Berchtold

Frequent Co-Authors

Guiping Ma
Guiping Ma Beijing University of Chemical Technology
Dongzhi Yang
Dongzhi Yang Beijing University of Chemical Technology
John F. Kennedy
John F. Kennedy University of Birmingham
Jeffrey W. Stansbury
Jeffrey W. Stansbury University of Colorado Denver
Feng Shi
Feng Shi United Imaging Intelligence (China)
Fengmin Lu
Fengmin Lu Peking University
Feng Shi
Feng Shi Beijing University of Chemical Technology
Wenjun Zhang
Wenjun Zhang City University of Hong Kong
Fu-Jian Xu
Fu-Jian Xu Beijing University of Chemical Technology
Christopher N. Bowman
Christopher N. Bowman University of Colorado Boulder

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