硕士生导师
个人信息Personal Information
学历:博士研究生毕业
学位:工学博士学位
办公地点:西南交通大学九里校区3号教学楼3430
在职信息:在岗
毕业院校:西南交通大学
学科:材料科学与工程
所在单位:化学学院
报考该导师研究生的方式
欢迎你报考孙得翔老师的研究生,报考有以下方式:
1、参加西南交通大学暑期夏令营活动,提交导师意向时,选择孙得翔老师,你的所有申请信息将发送给孙得翔老师,老师看到后将和你取得联系,点击此处参加夏令营活动
2、如果你能获得所在学校的推免生资格,欢迎通过推免方式申请孙得翔老师研究生,可以通过系统的推免生预报名系统提交申请,并选择意向导师为孙得翔老师,老师看到信息后将和你取得联系,点击此处推免生预报名
3、参加全国硕士研究生统一招生考试报考孙得翔老师招收的专业和方向,进入复试后提交导师意向时选择孙得翔老师。
4、如果你有兴趣攻读孙得翔老师博士研究生,可以通过申请考核或者统一招考等方式报考该导师博士研究生。
目前以第一作者或通讯作者发表SCI论文12篇,研究成果发表于Chemical Engineering Journal(IF:13.3)、Biomacromolecules(IF:5.5)、Composites Science and Technology(IF:8.3)、Composites Part A(IF:8.1)等国际高水平期刊。
代表性论文:
12. Wei-hang Chen, De-xiang Sun*, Duo-yang Zhang, Xiao-dong Qi, Jing-hui Yang, Lin Wang, Yong Wang*. Synchronously enhanced flame retardancy and mechanical properties of polylactic acid via in-situ assembly of polyphosphazene nanoparticles on ammonium polyphosphate. Chemical Engineering Journal, 2024, 499, 156361. (SCI一区)
11. Mai Feng, Chao-qun Wu, Zhu Zeng, Lin Wang, Meng-jie Xiao, De-xiang Sun*, Yong Wang*. Largely enhanced damping performance of nitrile rubber/ethylene–vinyl acetate blends via phenolic resin-induced phase separation. European Polymer Journal, 2024, 220, 113446. (SCI二区)
10. Zhu Zeng, Mai Feng, Jie Chen, De-xiang Sun*, Jing-hui Yang, Xiao-dong Qi, Yong Wang*. Improved crystallization capability and mechanical properties of poly(L-lactide) achieved by tailoring the grafted chain structure on graphene oxide. Polymer Composites, 2024, 45, 1-13. (SCI二区)
9. Shuang Wu, Ting-yu Zhu, Zhu Zeng, De-xiang Sun*, Jing-hui Yang, Xiao-dong Qi, Yong Wang*. Lightweight multifunctional electromagnetic shielding composites achieved by depositing Ag@MXene hybrid particles on wood-based aerogel. Composites Part A, 2024, 182, 108193. (SCI二区)
8. Chen-hui Huang, De-xiang Sun*, Ying Wu, Xiao-ying Lu*, Chao-qun Wu, Xiao-dong Qi, Jing-hui Yang, Yong Wang*. Design of super-toughened, heat-resistant and antistatic polyethylene terephthalate-based blend composites by constructing a tenacious interface. Polymer, 2023, 277, 125966. (SCI二区)
7. De-xiang Sun,1 Xiao-lei Liao,1 Nan Zhang*, Ting Huang, Yan-zhou Lei, Xiao-ling Xu, Yong Wang*. Biomimetic modification of super-wetting electrospun poly(vinylidene fluoride) porous fibers with organic dyes and heavy metal ions adsorption, oil/water separation, and sterilization performances toward wastewater treatment. Chinese Journal of Polymer Science, 2022, 40, 738-753. (SCI二区, “中国科技期刊卓越行动计划”期刊)
6. De-xiang Sun, Ting Gu, Yu-tong Mao, Chen-hui Huang, Xiao-dong Qi, Jing-hui Yang, Yong Wang*. Fabricating high thermal conductivity, high strength and toughness polylactic acid-based blend composite via constructing multi-oriented microstructures. Biomacromolecules, 2022, 23, 1789-1802. (SCI一区)
5. De-xiang Sun, Chen-hui Huang, Yu-tong Mao, Xiao-dong Qi, Yan-zhou Lei, Yong Wang*. Fabricating polylactic acid-based blend composite with balanced stiffness-toughness and excellent shape memory performance by incorporating surface-modified carbon nanofibers. Composites Science and Technology, 2022, 217, 109088. (SCI一区)
4. De-xiang Sun, Ting Gu, Xiao-dong Qi, Jing-hui Yang, Yan-zhou Lei, Yong Wang*. Highly-toughened biodegradable poly(L-lactic acid) composites with heat resistance and mechanical-damage-healing ability by adding poly(butylene adipate-co-butylene terephthalate) and carbon nanofibers. Chemical Engineering Journal, 2021, 424, 130558. (SCI一区)
3. De-xiang Sun,1 Yan-zhou Lei,1 Yu Lu, Sheng Cao, Xiao-dong Qi, Yong Wang*. Fabrication of super-toughened polypropylene-based nanocomposite with low elastomer content through tailoring the microscale damage mechanisms. Composites Science and Technology, 2020, 193, 108148. (SCI一区)
2. De-xiang Sun,1 Qi-qi Bai,1 Xin-zheng Jin, Xiao-dong Qi, Jing-hui Yang, Yong Wang*. Simultaneously enhanced thermal conductivity and fracture toughness in polystyrene/carbon nanofiber composites by adding elastomer. Composites Science and Technology, 2019, 184, 107864. (SCI一区)
1. De-xiang Sun, Chao-jin Yang, Xiao-dong Qi, Jing-hui Yang, Yong Wang*. Largely enhanced fracture toughness of the PP/EPDM blends induced by adding carbon nanofibers. Composites Science and Technology, 2018, 164, 146-152. (SCI一区)