張程

作者:時間:2022-05-31點擊數:

教師簡介

 

張程


 

出生年月

1993.12

最高學曆、學位

博士研究生、博士

 

副教授

 


電子郵箱

zhangcheng@usts.edu.cn


一、基本情況:

2012.09-2016.06     蘇州大學材料學部 (本科);

2016.09-2021.06     蘇州大學材料學部(碩博連讀)導師:路建美教授、李華教授;

2019.09-2020.09     新加坡南洋理工大學材料科學與工程學院(聯合培養博士),導師:Prof. Qichun Zhang

2021.07至今     bv伟德官方网站,bv伟德官方网站,講師。


二、主要研究領域及成果:

主要從事給受體型有機共轭新材料的設計與合成,開發多種有機半導體薄膜制備技術,并探索其在多進制信息存儲領域中的應用。主持校人才引進科研資助項目1項,參與國家和省部級課題3項,參加大學生創新創業省級重點項目1項,主持互聯網+項目校級金獎和銀獎各1項。曾獲蘇州工業園區捐贈獎學金、HORIBA Scientific 企業獎學金、鵬旭醫藥獎學金、學業特等獎學金等。以第一作者/通訊作者身份在Sci. China Mater., Small, ACS Appl. Mater. Inter., Small Sci., J. Mater. Chem. C, Chem. Commun., Org. Chem. Front., Mater. Chem. Front.等國際知名學術期刊上發表SCI論文16篇,合作在Adv. Mater., Chem. Eng. J., Appl. Catal. B等期刊發表SCI論文16篇,總被引240餘次,H-index8,擔任Nano Research等期刊特邀審稿人。申請國家專利1項。指導學生發表2SCI論文1篇,省級大學生創新創業項目1項,申請專利1項。

三、代表性科研成果:

Zhang Cheng*, Li Yang*, Li Zhuang, Jiang Yucheng, Zhang Jinlei, Zhao Run, Zou Jinyun, Wang Yanan, Wang Kuaibing, Ma Chunlan*, Zhang Qichun*. Nanofiber Architecture Engineering Implemented by Electrophoretic-Induced Self-Assembly Deposition Technology for Flash-Type Memristor[J]. ACS Appl. Mater. Interfaces 2022, 14: 3111-3120.

Zhang Cheng*, Li Yang*, Ma Chunlan, Zhang Qichun*. Recent Progress of Organic-Inorganic Hybrid Perovskites in RRAM, Artificial Synapse, and Logic Operation[J]. Small Science 2022, 2: 2100086.

Li Yang*, Zhang Cheng#, Ling Songtao, Ma Chunlan, Zhang Jinlei, Jiang Yucheng, Zhao Run, Li Hua*, Lu Jianmei*, Zhang Qichun*. Toward Highly Robust Nonvolatile Multilevel Memory by Fine Tuning of the Nanostructural Crystalline Solid-State Order[J]. Small 2021, 17: 2100102.

Li Yang*, Zhang, Cheng#, Shi Zhiming, Ma Chunlan*, Wang Jun, Zhang Qichun*. Recent Advances on Crystalline Materials-Based Flexible Memristors for Data Storage and Neuromorphic Applications[J]. Sci. China Mater. 2021, DOI: 10.1007/s40843-021-1771-5.

Li Yang*, Zhang Cheng#, Shi Zhiming, Li Jingni, Qian Qingyun, Ling Songtao, Zhang Yufen, Zhu Xiaolin, Wu Xingzhi, Zhang Jinlei*, Zhao Run, Jiang Yucheng, Zhang Qijian*, Ma Chunlan*. Nonvolatile Ternary Resistive Memory Performance of a Benzothiadiazole-Based Donor-Acceptor Material on ITO-Coated Glass[J]. Coatings 2021, 11: 318.

Zhang Cheng, Li Hua*, Su Yannan, Zhang Qijian, Li Yang, Lu Jianmei*. Controllable and Versatile Electrophoretic Deposition Technology for Monolithic Organic Memory Devices[J]. ACS Appl. Mater. Interfaces 2020, 12: 15482-15490.

Zhang Cheng, Li Hua*, Su Yannan, Yu Fei, Li Chao, Zhang Qichun*, Lu Jianmei*. The Incorporation of the Ionization Effect in Organic Semiconductors Assists in Triggering Multilevel Resistive Memory Behaviors[J]. Mater. Chem. Front. 2020, 4: 3280-3289.

Zhang Cheng, Wang Zongrui, Li Hua*, Lu Jianmei*, Zhang Qichun*. Recent Progress in the Usage of Tetrabromosubstituted Naphthalenetetracarboxylic Dianhydride as a Building Block to Construct Organic Semiconductors and their Applications[J]. Org. Chem. Front. 2020, 7: 3001-3026.

Zhang Cheng, Li Hua*, Lin Shixin, Su Yannan, Zhang Qijian, Li Yang, Wang Kuaibing, Lu Jianmei*. Fabrication of One-Dimensional Organic Nanofiber Networks via Electrophoretic Deposition for a Nonvolatile Memory Device[J]. ACS Appl. Mater. Interfaces 2020, 12: 57254-57263.

Zhang Cheng, Li Yang, Li Hua*, Zhang Qichun, Lu Jianmei*. Overview of Electric-Field-Induced Deposition Technology in Fabricating Organic Thin Films[J]. J. Mater. Chem. C 2020, 9: 374-394.

Zhang Cheng, Li Hua*, Li Zhuang, Li Yang, Zhang Qijian, Lu Jianmei*. Solvent‐Vapor Annealing of Amphiphile/Metal Interface for Orientated Molecular Stacking and Upgraded Resistive Memory Performance[J]. Macromol. Chem. Phys. 2019, 220, 1900334.

Zhang Cheng, Li Yang, Zhou Yan, Zhang Qijian, Li Hua*, Lu Jianmei*. Deriving Highly Oriented Organic Nanofibers and Ternary Memory Performance via Salification-Induced Effects[J]. Chem. Commun. 2018, 54: 10610-10613.

Zhang Cheng, Li Yang, Zhang Qijian, Li Hua*, Xu Qingfeng, He Jinghui, Lu Jianmei(*).Effects of Single Atom N-Substitution in the Molecular Skeleton on Fabricated Film Quality and Memory Device Performance[J]. Crystal Growth & Design 2018, 18: 1432-1436.


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