JUN HU头像

JUN HU

Professor

Research direction: Sustainable Functional Polymer Materials

Education:

  • Department: Advanced Innovation Center for Soft Matter Science and Engineering
  • ORCID:
  • DBLP:

10 Access

  • Email: jhu@mail.buct.edu.cn
  • Office : SMIC Building 801

Introduction

Work Experience

2018.01-Current   Beijing University of Chemical Technology, Advanced Innovation Center for Soft Matter Science and EngineeringProfessor

2014.12-2017.12   Changchun Institute of Applied Chemistry Chinese Academy Sciences, Associate Professor

2011.08-2014.12   University of South Carolina, Postdoctoral              

Educational Background:

2006.08-2011.07   Tsinghua University, Ph.D

2002.09-2006.07   China Agriculture University, M.S.


Education

Work Experience

Social Position

Social Activities

Research

The research focuses on design, construction, and application of sustainable functional polymer materials containing dynamic covalent bonds and noncovalent bonds.

Teaching

Courses for undergraduates

Soft Matter Functional Materials

Enger Materials and Devices

Courses for postgraduates

Soft Matter Science Principles and Applications

Biobased Functional Materials


Postgraduates

Funding

Vertical Project

Horizontal Project

Publications

(1) Jiang, Y.; Tang, N.; Wang, X.; Pei, D.; Zhang, H.*; Li, M. H.*;Hu, J.* Mechanically robust eutectogels enabled by precisely engineered crystalline domains. Nat. Commun2025, 16, 7417.

(2) Tang, N.; Jiang, Y.; Wei, K.; Zheng, Z.; Zhang, H.*; Hu, J.* Evolutionary reinforcement of polymer networks: a stepwise-enhanced strategy for ultrarobust eutectogels. Adv. Mater. 2024, 36, 2309576.

(3) Zheng, Z.; Li, J.; Wei, K.; Tang, N.; Li, M.-H.*; Hu, J.* Bioinspired integrated auxetic elastomers constructed by a dual dynamic interfacial healing strategy. Adv. Mater. 2023, 35, 2304631.

(4) Pei, D.; Wang, P.; Hao, J.*; Zi, Y.; Zhang, O.; Yang, J.; Tang, J.*; Hu, J.* A strong and tough thermosetting epoxy resin for recyclable high-performance composites. Angew. Chem. Int. Ed. 2025, e202505526.

(5) Ma, Y.; Zhao, Z.; Zheng, Z.; Li, J.; Li, M.-H.*; Hu, J.* High-performance poly(thioctic acid)-based thermosets featuring upcycling ability for in-situ foaming enabled by dual-dynamic networks. Matter 2024, 7, 4046



Awards

Patent

Honor Reward

Admissions Information