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Xia Yin

Personal Resume



Currently she is an Professor and Doctoral Supervisor in College of Textiles, Donghua University. She was selected as the Shanghai Sailing young talent and Donghua University Inspirational Plan.The projects she has undertaken include 2 general projects of the National Science Foundation and 1 Youth Fund. Her honors include the first prize of Shanghai Science and Technology Progress, the second prize of Natural Science of the Ministry of Education, the first prize of Science and Technology Progress of China Textile Association, the second prize of teaching achievements of China Textile Association, etc.

Education and Employment History


2002-2006

Donghua University, China

B.S. 

2006-2009

Donghua University, China

M.S.

2009-2014

University of California-Davis, USA

Ph.D.

2014-2017

College of Textiles, Donghua University

Lecturer

2017-2021
College of Textiles, Donghua UniversityAssociate Professor
2019-presentCollege of Textiles, Donghua UniversityDoctoral Supervisor
2021-present
College of Textiles, Donghua UniversityProfessor



Major Research Achievements


She is mainly engaged in the preparation and functional application research of microfiber nonwoven materials, and has carried out a series of research work in high efficiency and low resistance air filtration materials, waterproof and moisture permeable functional membranes, high efficiency sound absorption, lightweight and warm functional clothing. She has authored and co-authored 50 SCI papers(including 38 IF>5) in several journals such as Small, Nano Letters, ACS Applied Materials & Interfaces, etc. She participated in the formulation of 1 national standard (China National standard, Technical Specification for Daily Protective Masks, GB/T 32610-2016), and held more than 40 invention patents of which has been authorized over 30.

Representative Works:

[1] Xia Yin, Qun Chen and Ning Pan*. A more comprehensive transport model for multilayer-cloth for perspiration based infrared camouflage. Applied Thermal Engineering 2014, 68(1-2), 10-19. 

[2] Shan Wang, Xinglei Zhao, Xia Yin*, Jianyong Yu and Bin Ding. Electret polyvinylidene fluoride nanofibers hybridized by polytetrafluoroethylene nanoparticles for high-efficiency air filtration. ACS Applied Materials & Interfaces 2016, 8(36), 23985-23994. 

[3] Shichao Zhang, Hui Liu, Xia Yin*, Jianyong Yu and Bin Ding*. Anti-deformed polyacrylonitrile/polysulfone composite membrane with binary structures for effective air filtration. ACS Applied Materials & Interfaces 2016, 8(12), 8086-8095.

[4] Fenglei Zuo, Shichao Zhang, Hui Liu, Hao Fong, Xia Yin*, Jianyong Yu and Bin Ding*. Free-standing polyurethane nanofiber/nets air filters for effective PM capture. Small 2017, 1702139. 

[5] Yue Xu, Junlu Sheng, Xia Yin*, Jianyong Yu and Bin Ding*. Functional modification of breathable polyacrylonitrile/polyurethane/TiO2 nanofibrous membranes with robust ultraviolet resistant and waterproof performance. Journal of Colloid and Interface Science 2017, 15, 508-516.

[6] Min Zhang, Junlu Sheng, Xia Yin*, Jianyong Yu and Bin Ding. Polyvinyl butyral modified polyvinylidene fluoride breathable-waterproof nanofibrous membranes with enhanced mechanical performance. Macromolecular Materials and Engineering 2017, 302, 1600272.

[7] Xinxin Ding, Yuyao Li, Yang Si, Xia Yin*, Jianyong Yu and Bin Ding. Electrospun polyvinylidene fluoride/SiO2 nanofibrous membranes with enhanced electret property for efficient air filtration. Composites Communications 2019, 13, 57-64.

[8] Kaili Qiu, Ahmed Elhassan Tianhe Tian, Xia Yin*, Jianyong Yu, Zhaoling Li* and Bin Ding. Highly flexible, efficient and sandwich structured infrared radiation heating fabric. ACS Applied Materials & Interfaces 2020, 12, 9, 11016-11025.

[9] Lei Zhao, Hongyan Wu, Wenling Jiao, Xia Yin*, Yang Si, Jianyong Yu and Bin Ding. Superelastic, lightweight, and flame-retardant 3D fibrous sponge fabricated by one-step electrospinning for heat retention. Composites Communications 2021, 25, 100681.

[10] Leitao Cao, Haoru Shan, Dingding Zong, Xi Yu, Xia Yin*, Yang Si*, Jianyong Yu and Bin Ding*. Fire-Resistant and Hierarchically Structured Elastic Ceramic Nanofibrous Aerogels for Efficient Low-Frequency Noise Reduction. Nano Letters, 2022, 22 (4) , 1609-1617.

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