個人簡介
賈超,東華大學材料科學與工程學院/纖維材料改性國家重點實驗室副研究員。主要研究方向為微納米纖維、纖維素納米材料、紡絲儀器開發等。已發表學術論文55篇,SCI收錄47篇,以第一/通訊作者在Nat. Commun.、Joule、Adv. Mater.、ACS Nano、Nano Lett.、Nano Energy等期刊發表SCI論文16篇,論文共被引用4500餘次(Google scholar),H指數29;共申請發明專利11項,授權發明專利7項;參編英文書籍1部;擔任Adv. Fiber Mater.青年編委和中國纖維素行業協會技術委員會委員,並擔任Nat. Commun.、Nanoscale等多個期刊的審稿人。
學習與工作經歷
研究方向
1. 納米材料(納米纖維、纖維素納米材料等)
2. 納米製造(氣紡絲、瞬時釋壓紡絲等)
3. 納米結構(陶瓷纖維氣凝膠、透明紙等)
科研項目
1. 國家自然科學基金青年基金,52102090,30萬,2022.01-2024.12,主持,在研
2. 國家自然科學基金重大科研儀器研製項目,52127805,853.2萬,2022.01-2026.12,參與(排名2),在研
3. 中國博士後科學基金特別資助,2019T120083,18萬,2019.06-2021.01,主持,結題
4. 中國博士後科學基金面上一等資助,2018M640124,8萬,2018.11-2021.01,主持,結題
代表性論文
1. Jia, C.; Xu, Z.; Luo, D.; Xiang, H.; Zhu, M. Flexible Ceramic Fibers: Recent Development in Preparation and Application. Advanced Fiber Materials,2022. 10.1007/s42765-022-00133-y.
2. Liu, Y.; Jia, C.; Zhang, H.; Wang, H.; Li, P.; Jia, L.; Wang, F.; Zhu, P.; Wang, H.; Yu, L.; Wang, F.; Wang, L.; Zhang, X.; Sun, Y.; Li, B. Free-Standing Ultrafine Nanofiber Papers with High PM0.3 Mechanical Filtration Efficiency by Scalable Blow and Electro-Blow Spinning. ACS Applied Materials & Interfaces, 2021, 13, 34773-34781.
3. Jia, C.; Li, L.; Song, J.; Li, Z.; Wu, H.Mass Production of Ultrafine Fibers by a Versatile Solution Blow Spinning Method. Accounts of Materials Research, 2021, 2, 432-446.
4. Jia, C.; Li, L.; Liu, Y.; Fang, B.; Ding, H.; Song, J.; Liu, Y.; Xiang, K.; Lin, S.; Li, Z.; Si, W.; Li, B.; Sheng, X.; Wang, D.; Wei, X.; Wu, H. Highly Compressible and Anisotropic Lamellar Ceramic Sponges with Superior Thermal Insulation and Acoustic Absorption Performances. Nature Communications,2020, 11, 3732.
5. Jia, C.; Liu, Y.; Li, L.; Song, J.; Wang, H.; Liu, Z.; Li, Z.; Li, B.; Fang, M.; Wu, H. A Foldable All-Ceramic Air Filter Paper with High Efficiency and High Temperature Resistance. Nano Letters, 2020, 20, 4993-5000.
6. Jia, C.; Chen, C.; Mi, R.; Li, T.; Dai, J.; Yang, Z.; Pei, Y.; He, S.; Bian, H.; Jang, S.-H.; Zhu, J.Y.; Yang, B.; Hu, L. Clear Wood toward High-Performance Building Materials. ACS Nano, 2019, 13, 9993-10001.
7. Jia, C.; Chen, C.; Kuang, Y.; Fu, K.; Wang, Y.; Yao, Y.; Kronthal, S.; Hitz, E.; Song, J.; Xu, F.; Liu, B.; Hu, L. From Wood to Textiles: Top-Down Assembly of Aligned Cellulose Nanofibers. Advanced Materials,2018, 30, e1801347.
8. Jia, C.; Jiang, F.; Hu, P.; Kuang, Y.; He, S.; Li, T.; Chen, C.; Murphy, A.; Yang, C.; Yao, Y.; Dai, J.; Raub, C. B.; Luo, X.; Hu, L. Anisotropic, Mesoporous Microfluidic Frameworks with Scalable, Aligned Cellulose Nanofibers. ACS Applied Materials & Interfaces,2018, 10, 7362-7370.
9. Kong, W.; Wang, C.; Jia, C.; Kuang, Y.; Pastel, G.; Chen, C.; Chen, G.; He, S.; Huang, H.; Zhang, J.; Wang, S.; Hu, L. Muscle-Inspired Highly Anisotropic, Strong, Ion-Conductive Hydrogels. Advanced Materials, 2018, 30, e1801934.
10. Zhu, M.; Jia, C.; Wang, Y.; Fang, Z.; Dai, J.; Xu, L.; Huang, D.; Wu, J.; Li, Y.; Song, J.; Yao, Y.; Hitz, E.; Wang, Y.; Hu, L. Isotropic Paper Directly from Anisotropic Wood: Top-down Green Transparent Substrate Toward Biodegradable Electronics. ACS Applied Materials & Interfaces, 2018, 10, 28566-28571.
11. Jia, C.; Li, Y.; Yang, Z.; Chen, G.; Yao, Y.; Jiang, F.; Kuang, Y.; Pastel, G.; Xie, H.; Yang, B.; Das, S.; Hu, L. Rich Mesostructures Derived from Natural Woods for Solar Steam Generation. Joule, 2017, 1, 588-599. (ESI高被引論文)
12. Jia, C.; Li, T.; Chen, C.; Dai, J.; Kierzewski, I. M.; Song, J.; Li, Y.; Yang, C.; Wang, C.; Hu, L. Scalable, Anisotropic Transparent Paper Directly from Wood for Light Management in Solar Cells. Nano Energy,2017, 36, 366-373.
13. Jia, C.; Bian, H.; Gao, T.; Jiang, F.; Kierzewski, I. M.; Wang, Y.; Yao, Y.; Chen, L.; Shao, Z.; Zhu, J. Y.; Hu, L. Thermally Stable Cellulose Nanocrystals toward High-Performance 2D and 3D Nanostructures. ACS Applied Materials & Interfaces,2017, 9, 28922-28929.
14. Jia, C.; Chen, L.; Shao, Z.; Agarwal, U. P.; Hu, L.; Zhu, J. Y. Using a Fully Recyclable Dicarboxylic Acid for Producing Dispersible and Thermally Stable Cellulose Nanomaterials from Different Cellulosic Sources. Cellulose,2017, 24, 2483-2498.
15. Jia, C.; Shao, Z.; Fan, H.; Feng, R.; Wang, F.; Wang, W.; Wang, J.; Zhang, D.; Lv, Y. Barium Titanate as a Filler for Improving the Dielectric Property of Cyanoethyl Cellulose/Antimony Tin Oxide Nanocomposite Films. Composites Part A: Applied Science and Manufacturing,2016, 86, 1-8.
授權專利
1. 伍暉、賈超. 利用負壓製備微納米纖維的紡絲方法及微納米纖維,ZL202010441546.6,授權日:2021.08.10.
2. 伍暉、賈超. 利用負壓製備微納米纖維的紡絲裝置,ZL202010439315.1,授權日:2021.08.10.
3. 伍暉、賈超、王海楊.柔性莫來石纖維氣凝膠材料及其製備方法,ZL201910954101.5,授權日:2020.10.23.
4. 伍暉、賈超. 一種各向異性層狀無機纖維氣凝膠材料及其製備方法,ZL201910376244.2,授權日:2020.07.14.
5. 伍暉、賈超. 一種各向異性層狀碳纖維基氣凝膠材料及其製備方法,ZL201910375720.9,授權日:2020.06.19.
6. 王飛俊、賈超、邵自強等. 氰乙基纖維素基高介電柔性納米複合膜及其製備方法,ZL201510096746.1,授權日:2017.05.03.
7. 王利強、賈超、盧立新等. 一種馬鈴薯澱粉基可食性複合食品包裝膜及其製備方法,ZL201210174923.X,授權日:2014.04.16.
國際交流與合作
本課題組與美國馬里蘭大學、清華大學、北京理工大學、美國農業部林產品實驗室等高校和研究機構長期保持合作關係,優秀學生可推薦到以上單位進行交流或聯合培養。