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xueer_660木蟲 (小有名氣)
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2026年天津科技大學(xué)新能源催化與膜材料課題組博士招生
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天津科技大學(xué)化工與材料學(xué)院 新能源與膜材料課題組 一.導(dǎo)師介紹 鄭明勝,本科畢業(yè)于西安交通大學(xué),博士畢業(yè)于北京科技大學(xué),清華大學(xué)博士后,現(xiàn)為天津科技大學(xué)化工與材料學(xué)院副教授,博導(dǎo)。目前主要研究領(lǐng)域:(1) 聚合物基納米復(fù)合電介質(zhì)材料(儲能、芯片封裝);(2) 本征型高/低介電材料;(3) 功能型電介質(zhì)材料(傳感器、軟體機(jī)器人、無磁電機(jī)等)。 主持和參與了多個國家級、省部級及企業(yè)合作項目,累計獲取科研經(jīng)費已超 450 萬元,并在 Advanced Materials、Materials Horizons等頂刊發(fā)表多篇文章。 李征征,2014 年畢業(yè)于韓國忠南大學(xué),獲得工學(xué)博士學(xué)位,天津科技大學(xué)化工與材料學(xué)院副研究員。主講高分子復(fù)合材料及成型工藝課程,研究領(lǐng)域為智能高分子水凝膠及其在生物領(lǐng)域、電化學(xué)及傳感器領(lǐng)域的應(yīng)用。在 NPG Asia materials, Carbohydrate polymers 等期刊共發(fā)表學(xué)術(shù)文章 10 余篇,主持和參加各類科研項目 6 項,指導(dǎo)學(xué)生參加“挑戰(zhàn)杯”、“互聯(lián)網(wǎng)+”等各類創(chuàng)新創(chuàng)業(yè)大賽并多次取得省部級以上榮譽(yù)。 成果如下: 1. Xiaodi Dong, Baoquan Wan, Ming-Sheng Zheng*, Langbiao Huang, Yang Feng, Ruife ng Yao, Jinghui Gao, Quan-Liang Zhao*, Jun-Wei Zha*, Dual-effect Coupling for Superior Dielectric and Thermal Conductivity of Polyimide Composite Films Featuring“Crystal-like Phase” Structure[J]. Advanced Materials, 2024, 36(7): 2307804.(SCI, IF=29.4, 一區(qū)) 2. Wentong Wu, Ming-Sheng Zheng*, Kejian Lu, Feng Liu, Yan-Hui Song, Maochang Li u* and Zhi-Min Dang*. Thermally conductive composites based on hexagonal boron nitrid e nanosheets for thermal management: fundamentals to applications[J]. Composites Part A: Applied Science and Manufacturing, 2023: 107533. (SCI, IF=8.7, 一區(qū)) 3. Xue-Jie Liu, Shao-Long Zhong, Ming-Sheng Zheng*, Zhi-Min Dang, George Chen and Jun-Wei Zha*, Enhanced high-temperature capacitive performance of a bilayer-structured c omposite film employing a charge blocking layer[J]. ACS Applied Materials & Interfaces, 2022, 15(1): 1105-1114. (SCI, IF=9.5, 二區(qū)) 4. Xue-Jie Liu, Ming-Sheng Zheng*, George Chen, Zhi-Min Dang*, Jun-Wei Zha*, High-temperature polyimide dielectric materials for energy storage: theory, design, preparation an d properties[J]. Energy & Environmental Science, 2022, 15, 56-81. (SCI, IF=32.5, 一區(qū), 高被引論文) 5. Xue-Jie Liu, Ming-Sheng Zheng*, Gang Wang, Yi-Yi Zhang, Zhi-Min Dang, George Chen, Jun-Wei Zha*, High energy density of polyimide films employing an imidization rea ction kinetics strategy at elevated temperature[J]. Journal of Materials Chemistry A, 2022, 10, 10950-10959.(SCI, IF=11.9, 二區(qū)) 6. Hang Zhang, Ziran You, Ruiting Wang, Jianrong Liang, Yachu Song, Ying Gao, Yanha o Duan, Zhengzheng Li*. Double cross-linked hydrogel electrolytes for flexible supercapac itors with mechanical stability, wide temperature adaptability and self-healing property[J]. Journal of Energy Storage, 2025, 130, 117333.(SCI, IF=9.8, 二區(qū)) 7. Hang Zhang, Jianrong Liang, Ziran You, Ying Gao, Yachu Song, Yanhao Duan, Xingchen Yan, Da Lei, Chuanling Si, Zhengzheng Li*. Rare earth ions-reinforced polycationic gel polymer electrolytes for enhancing ionic conductivity and zinc anode interface stability in flexible zinc-air batteries. Chemical Engineering Journal, 2025, 164231. (SCI, IF=13.2, 一區(qū)) 8. Jianrong Liang, Hang Zhang, Li Wan, Ziran You, Chunlong Li, Ruiting Wang, Zhihao Shang, Da Lei, Zhengzheng Li*.Gel polymer electrolytes based on compound cationic additives for environmentally adaptive flexible zinc-air batteries with a stable electrolyte/ zinc anode interface. Energy Storage Materials, 2024, 71, 103677. (SCI, IF=20.2, 一區(qū)) 9. Zhihao Shang, Hang Zhang, Jianrong Liang, Ziran You, Ruiting Wang, Li Wan, Da Lei, Zhengzheng Li*. Highly adhesive hydrogel electrolytes driven by adenosine monophosphate and Fe 3+ for high-voltage asymmetric flexible zinc-air batteries. Energy Storage Materials, 2024, 71, 103599.(SCI, IF=20.2, 一區(qū)) 10. Ruiting Wang, Da Lei, Hang Zhang, Jianrong Liang, Zhihao Shang, Li Wan a, Zhengzheng Li*, Chuanling Si. An interface-integrated hydrogel for all-in-one flexible supercapacitor with excellent wide-temperature and self-healing properties. Composites Part B: Engineering, 2024, 275, 111345.(SCI, IF=14.2, 一區(qū)) 11. Mengfei Qu, Da Lei, Hang Zhang, Xiaowei Zhang, Zhihao Shang, Ruiting Wang, Li Wan, Zhengzheng Li*, Chuanling Si. One-pot method for in situ synthesis of triple cross-linked hydrogel electrolytes for flexible supercapacitors with high mechanical and electrochemical properties. Journal of Energy Storage, 2023, 72, 108644.(SCI, IF=9.8,二區(qū)) 12. Zhihao Shang, Hang Zhang, Mengfei Qu, Ruiting Wang, Li Wan, Da Lei, Zhengzheng Li*. High adhesion hydrogel electrolytes enhanced by multifunctional group polymer enable high performance of flexible zinc-air batteries in wide temperature range. Chemical Engineering Journal, 2023, 143836.(SCI, IF=13.2, 一區(qū)) 13. Hang Zhang, Xuemin Wang, Zhengzheng Li*, Cui Zhang, Shuangxi Liu. In situ encapsulation engineering boosts the electrochemical performance of highly graphitized N-doped porous carbon-based copper–cobalt selenides for bifunctional oxygen electrocatalysis. Nanoscale, 2021,13, 17663-17674.(SCI, IF=5.1, 二區(qū)) 14. Zhengzheng Li*, Hyeeun Shim, Myeong Ok Cho, Ik Sung Cho, Jin Hyun Lee, Sun-Woong Kang, Bosun Kwon, Kang Moo Huh. Thermo-sensitive Injectable Glycol Chitosan-based Hydrogel for Treatment of Degenerative Disc Disease. Carbohydrate Polymers, 2018,184, 342-353.(SCI, IF=12.5, 一區(qū)) 15. Myeong Ok Cho, Zhengzheng Li*, Hye-Eun Shim, Ik-Sung Cho, Md Nurunnabi, Honghyun Park, Kuen Yong Lee, Sung-Hwan Moon, Ki-Suk Kim, Sun-Woong Kang, Kang Moo Huh. Bioinspired tuning of glycol chitosan for 3D cell culture. NPG Asia Materials, 2016, e309.(SCI, IF=8.3, 一區(qū)) 16. Zhengzheng Li*, Sungpil Cho, Ick Chan Kwon, Margit M., Janát-Amsbury, Kang MooHuh. Preparation and characterization of glycol chitin as a new thermos gelling polymer for biomedical applications. Carbohydrate Polymers, 2013, 92, 2267-2275.(SCI, IF=12.5,一區(qū)) 二.招生章程: (一) 招生名額:學(xué)術(shù)學(xué)位博士研究生 1~2 人。 (二)報考條件: 1.已獲或即將獲得材料科學(xué)、高分子及能源等相關(guān)專業(yè)的碩士學(xué)位,與課題組研究方向相關(guān); 2. 有理想、有抱負(fù),為人踏實肯干,責(zé)任心強(qiáng),具備團(tuán)隊協(xié)作精神; 3. 具備優(yōu)秀的中英文寫作能力,研究生期間獨立發(fā)表過 SCI 論文者優(yōu)先考慮; (三)學(xué)制:基本學(xué)制為 4 年。 (四)課題組情況簡介:連續(xù)三年課題組研究生獲得國家獎學(xué)金。 (五)所需材料: 1. 個人詳細(xì)簡歷(含學(xué)習(xí)工作經(jīng)歷、科研成果、獲獎情況等); 2. 個人陳述(包括研究興趣、博士階段研究設(shè)想及未來規(guī)劃); 3. 代表性論文、專利或證書等證明材料。 (六)聯(lián)系方式: 請有意向的同學(xué)聯(lián)系 18322595347,并將簡歷發(fā)送至郵箱 46361319@qq.com。學(xué)校網(wǎng)上報名時間為 2026 年 1 月 7 日 9:00 - 2 月 27 日 22:00,歡迎各位同學(xué)咨詢。 |
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