个人简介
研究方向
承担项目
代表性学术成果
陈恒

hchen@dgut.edu.cn

交叉中心B06

陈恒,副研究员,学科骨干,2009年本科毕业于西北工业大学,并于2012年和2015年分别获得硕士和博士学位,2015年至2017年在香港中文大学从事博士后研究工作,2018年至2021年在深圳大学任职副研究员。

主要从事高分子合成与改性相关研究,在Chemical Engineering Journal、Macromolecules和ACS Sustainable Chemistry & Engineering等SCI期刊发表论文30余篇,主持国家自然科学基金青年基金等科研项目3项,担任Chemical Engineering Journal、Carbohydrate Polymers和ACS Applied Materials & Interfaces等SCI期刊审稿人,广东省自然科学基金面上项目评审专家。

自修复弹性体与水凝胶

高分子助剂

天然高分子改性

国家自然科学基金青年基金项目,52103059,具有增塑和光稳定双重功能生物基PVC助剂的设计与研究,2022-01至2024-12,30万,主持;

广东省基础与应用基础研究基金青年基金项目,2019A1515110433,高性能聚合物型紫外线吸收剂的制备与共混改性热塑性树脂,2020-01至2022-12,10万,主持;

深圳市基础研究面上项目,JCYJ20190808123207674,抗析出高性能紫外线屏蔽高分子材料的研究,2020-01至2022-12,30万,主持;

国家自然科学基金面上项目,51973119,高比表面聚合物微纳结构的高性能摩擦发电机理与应用研究,2020-01至2023-12,57万,参与

1.Heng Chen, Penghui Ge, Zhichao Yan, Ming Chen, Xingyi Dai, Haitao Zhuo*, Shaojun Chen*, Longbiao Huang*, Teng Zhang. 3D Printable, Biomimetic Adhesive, and Autonomous Selfhealing Acrylic Elastomers based on Hydrogen Bonding for Customized Attachable StrainSensor.Chemical Engineering Journal,2022, 430, 133111.

2.Di Wang, Wei Zhang, Chunxi Zhang, Liwei Wang,Heng Chen*, Jianbin Xu*,Exosomal Non-coding RNAs have a Significant Effect on Tumor Metastasis.Molecular Therapy-Nucleic Acids, 2022, 29, 16-35.

3.Xiaokai Li,Heng Chen*, Ming Chen, Jiawei Qi, Shaojun Chen, Haitao Zhuo*, Ionic Liquid Decorated Copolymer Binders for Silicon/Graphite Anodes with Enhanced Rate Capability andExcellent Cycle Stability.ACS Applied Energy Materials,2021, 4, 11, 12709–12717.

4.Heng Chen, Huan Liu, Ming Chen, Penghui Ge, Shaojun Chen*,Hao Yuan*, Preparation of thermostable and compatible citrate-based polyesters for enhancing the ultraviolet shielding performance of thermoplastic resin.Polymer Chemistry,2021,12, 1939-1949.

5.Jianbin Xu, Guolin Zhang, Xin Luo, Di Wang, Wei Zhou, Yan Zhang, Wei Zhang, Jiaxin Chen, Qing Meng, Engeng Chen,Heng Chen*, Zhangfa Song*, Co-delivery of 5-fluorouracil and miRNA-34a mimics by host-guest self-assembly nanocarriers for efficacious targeted therapy in colorectal cancer patient-derived tumor xenografts.Theranostics, 2021, 11, 2475–2489.

6.Heng Chen, Beibei Hao, Penghui Ge, Shaojun Chen*,Highly stretchable, self-healing, and 3D printing prefabricatable hydrophobic association hydrogels with the assistance of electrostatic interaction.Polymer Chemistry,2020, 11,4741–4748.

7.Heng Chen, Junxian Huang, Beibei Hao, Boguang Yang, Shaojun Chen*, Guanghui Yang, Jianbin Xu*, Citrate-based fluorophore-modified cellulose nanocrystals as a biocompatible fluorescent probe for detecting ferric ions and intracellular imaging.Carbohydrate Polymers,2019, 224, 115198.

8.Haitao Zhuo, Hao Wen, Guanlun Liu,Heng Chen*, Shaojun Chen*, Facile water-assisted permanent shape reconfiguration of zwitterionic polyurethanes.Polymer, 2018, 158, 25–31.

9.Heng Chen, Xiaohui Yan, Qian Feng, Pengchao Zhao, Xiayi Xu,Dickon H. L. Ng, Liming Bian*.Citric acid/cysteine modified cellulose-based materials: green preparation and its applications in anti-counterfeiting, chemical sensing, and UV shielding.ACS Sustainable Chemistry & Engineering, 2017, 5, 11387–11394.

10.Shan Zhang, Jianbin Xu,Heng Chen*, Zhangfa Song, Yalan Wu, Xingyi Dai, Jie Kong*. Acid-cleavable unimolecular micelles from amphiphilic star copolymers for triggered release of anticancer drugs.Macromolecular Bioscience, 2017, 17, 1600258.

11.Heng Chen, Jie Kong*.Hyperbranched polymers from A2+B3strategy: recent advances in description and control of fine topology,Polymer Chemistry, 2016, 7, 3643–3663.

12.Heng Chen,Shan Zhang, Jie Kong*.Topological analysis and intramolecular cyclic feature evaluation of polymers derived from Am+Bnstep-growth polymerization.Polymer Chemistry, 2015, 6, 909–916.

13.Heng Chen, Jie Kong*. Terminal index: A new way for precise description of topologic structure of highly branched polymers derived from A2+B3stepwise polymerization.Journal of Physical Chemistry B, 2014, 118, 3441–3450.

14.Heng Chen, Jie Kong*, Wei Tian, Xiao-dong Fan. Intramolecular cyclization in A2+B3polymersviastep-wise polymerization resulting in a highly branched topology: Quantitative determination of cycles by combined NMR and SEC analytics.Macromolecules, 2012, 45, 6185–6195.

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