
张志旭,男,1995年11月生,于东南大学获博士学位,导师熊仁根教授。2023年以“双龙学者”特聘教授身份加入浙师大化材学院。近年来主要开展分子基铁电压电材料、压电复合器件、多铁材料、光电响应材料等领域研究。近五年以通讯/第一作者身份发表学术论文30余篇,包括J. Am. Chem. Soc.(4篇)、Nat. Commun.(3篇)、 Angew. Chem.(6篇)、 Chem. Sci.、Small、Chin. Chem. Lett.等国际刊物,被引2000余次。
学习和工作经历:
2013.09-2017.06,青岛大学,应用化学专业,学士;
2017.09-2022.12,东南大学,材料物理与化学专业,博士;
2023.03-至今,浙江师范大学,化学与材料科学学院,教师。
(1) J. Am. Chem. Soc. 2024, 146, 27443–27450. (8) Angew. Chem. Int. Ed. 2025, 64, e202518937.
(2) J. Am. Chem. Soc. 2024, 146, 21120–21128. (9) Angew. Chem. Int. Ed. 2025, 64, e202514669.
(3) J. Am. Chem. Soc. 2020, 142, 17787-17794. (10) Angew. Chem., Int. Ed. 2025, 64, e202505163.
(4) J. Am. Chem. Soc. 2020, 142, 9000-9006. (11) Angew. Chem., Int. Ed. 2025, 64, e202509006.
(5) Nat. Commun. 2025, 16, 7760. (12) Angew. Chem., Int. Ed. 2024, 63, e202319650.
(6) Nat. Commun. 2025, 16, 3071. (13) Angew. Chem., Int. Ed. 2022, 61, e202210809.
(7) Nat. Commun. 2023, 14, 2863.
1. 国家自然科学基金青年项目(22405243),多极轴锗基杂化钙钛矿铁电体的设计构筑及性能研究,在研。
2. 浙江省自然科学基金青年项目(LQN25B010003),有机-无机杂化铁电体的极化调控与柔性自供电传感研究,在研。
3. 金华市科技计划重点项目(2024-1-060),多极轴分子基铁电材料及其柔性复合器件,在研。
4. 浙江师范大学双龙学者启动经费,在研。
(1)Elsevier全球前2%顶尖科学家 (World’s Top 2% Scientists)(2023/2024年度)
(2)International Material Scientist Awards “Best Researcher Award” (2025年度)
(3)宝钢教育奖(2022年度)
(4)浙江省自然科学奖 二等奖 (排名第二)(2024年度)
2025.11,2025年中国化学快报无机化学前沿论坛,哈尔滨,邀请报告
2025.09,The 17th China-Japan Symposium on Ferroelectric Materials and Their Applications,长沙,邀请报告
2025.04,第二十届全国电介质物理、材料与应用学术会议,成都,邀请报告
2024.12,中国化学快报无机化学学术研讨会,南昌,邀请报告
2024.04,第十九届全国电介质物理、材料与应用学术会议,南京,邀请报告
1、主讲课程:
本科生的《无机化学实验》、《材料化学》、《普通化学实验》
研究生的《材料微观结构分析》、《无机功能材料》、《铁电化学》等课程
2、教改项目:
主持浙江省高等教育2025年研究生教学改革常规项目1项
3、指导学生情况:
本科生:
(1)2025年国家级大学生创新创业计划项目(202510345017) (学生负责人:赵燕平)
(2)2025年度浙江省大学生科技创新活动计划(新苗人才计划)项目 (学生负责人:周齐昉)
(3)浙江省国际大学生创新大赛(2025)银奖 (学生负责人:吴林艺、楼俊超)
(4)第一届浙江省大学生新材料创新与实践大赛 二等奖 (学生负责人:徐乐楚)
(5)浙江师范大学大学生创新大赛(2025)金奖 (学生负责人:吴林艺、楼俊超)
(6)第十九届“挑战杯”全国大学生课外学术科技作品竞赛 二等奖 (学生负责人:胡煜)
(7)浙江省第十九届“挑战杯”大学生课外学术科技作品竞赛 金奖 (学生负责人:胡煜)
(8)第一届浙江省大学生新材料创新与实践大赛 优秀指导教师
研究生:
(1)合作指导博士生贾强强同学获校第五届研究生“十佳学术之星”
(2)合作指导博士生倪皓飞同学获2025年国家奖学金
(3)合作指导博士生倪皓飞同学获批2025年中国科协青年科技人才培育工程博士生专项计划
After joining ZJNU
2025年
(33) Two-dimensional lead-free double perovskite ferroelastics with dynamic thermochromism. Chem. Sci., 2025, 16, 23385-23393.
(32) Proton Alloying in an Organic-Inorganic Hybrid Material Enables Unusual Dynamic Birefringence and Martensitic Actuation. Angew. Chem. Int. Ed. 2025, 64, e202518937.
(31) Two-Dimensional Heterovalent Alloying Hybrid Double Perovskite Solid Solution for Elevating Ferroelastic Photoelectric Response. Angew. Chem. Int. Ed. 2025, 64, e202514669.
(30) Polarization-Switching Controlled Luminescence in Hybrid Ferroelectric. Angew. Chem., Int. Ed. 2025, 64, e202505163.
(29) Lone pair expression in fluorinated two-dimensional hybrid perovskite enables multiaxial ferroelectricity and nonlinear optical response. Nat. Commun. 2025, 16, 7760.
(28) Alkaline Earth Metal-Based Hybrid Organic-Inorganic Perovskite-Like Ferroelectrics. Angew. Chem., Int. Ed. 2025, 64, e202509006.
(27) Unraveling Lattice Void Occupancy Engineering for Regulating Optical/Dielectric Responses in Hybrid Crystals. Cryst. Growth Des. 2025, 25, 6269–6276.
(26) Mechanically deformable organic ferroelectric crystal with plasticity optimized by fluorination. Nat. Commun. 2025, 16, 3071.
(25) Halogen Engineering Enables Tunable Dielectric Response and Dimensional Regulation in Organic–Inorganic Hybrid Halides. Cryst. Growth Des. 2025, 25, 1597–1604.
2024年
(24) Metal-Free Perovskite Ferroelectrics with the Most Equivalent Polarization Axes. J. Am. Chem. Soc. 2024, 146, 27443–27450.
(23) Experimental Observation of the Fully Ferroelectric–Fully Ferroelastic Effect in Multiferroic Hybrid Perovskites. J. Am. Chem. Soc. 2024, 146, 21120–21128.
(22) Stereo-Active Lone Pairs Induced Second Harmonic Generation Responses and Electrocatalytic Activity in Hybrid Material. Chem. Eur. J. 2024, 30, e202402119.
(21) Homochirality to design high-Tc lead-free ferroelastic semiconductors. J. Mater. Chem. C 2024, 12, 6098-6105.
(20) B-site ion regulation strategy enables performance optimization and multifunctional integration of hybrid perovskite ferroelectrics. Chin. Chem. Lett. 2024, 109690.
(19) Organic-Inorganic Hybrid Ferroelectric and Antiferroelectric with Afterglow Emission. Angew. Chem., Int. Ed. 2024, e202319650.
(18) Chirality Extends Multiple-Channel Bistable Responses in Hybrid Perovskites. ACS Mater. Lett. 2024, 6, 452-460.
2023年
(17) Molecular orientation dynamics triggers ferroelectricity and ferroelasticity in an organic–inorganic halide material. Inorg. Chem. Front. 2023, 10, 7231-7237.
(16) Multifunctional dielectric/optical response with broadband white light emission in a hybrid stannic halide crystal. Mater. Chem. Front. 2023, 7, 6247-6253.
(15) The halogen substitution strategy of inorganic skeletons triggers dielectric and band gap regulation of hybrid perovskites. Dalton Trans. 2023, 52, 16406-16412.
(14) Introducing Ferroelasticity into 1D Hybrid Lead Halide Semiconductor by Halogen Substitution Strategy. Small 2023, 2303127.
(13) Targeted regulation and optimization of multifunctional phase transition materials by novel void occupancy engineering. Chem. Sci. 2023, 14, 9041-9047.
(12) Dielectric/SHG/PL triple-channel properties in chiral spirocyclic organic–inorganic hybrids. J. Mater. Chem. C 2023, 11, 10051-10057.
(11) Homochiral Chemistry Strategy to Trigger Second-Harmonic Generation and Dual Dielectric Switches. Inorg. Chem. 2023, 62, 11701–11707.
(10) Superior ferroelectricity and nonlinear optical response in a hybrid germanium iodide hexagonal perovskite. Nat. Commun. 2023, 14, 2863.
Before joining ZJNU
(9) The First Chiro-Inositol Organosilicon Ferroelectric Crystal. Angew. Chem., Int. Ed. 2022, 61, e202210809.
(8) A ferroelastic molecular rotator (Me2N(CH2)2NH3)(18-crown-6) triflate with dual dielectric switches. Mater. Chem. Front. 2022, 6, 1929-1937.
(7) Ferroelastic Hybrid Bismuth Bromides with Dual Dielectric Switches. Chem. Mater. 2021, 33, 5790-5799.
(6) Mechanochemistry enables optical-electrical multifunctional response and tunability in two-dimensional hybrid perovskites. Sci. China-Mater. 2021, 64, 706-716.
(5) Organometallic-Based Hybrid Perovskite Piezoelectrics with a Narrow Band Gap. J. Am. Chem. Soc. 2020, 142, 17787-17794.
(4) Exploring high-performance integration in a plastic crystal/film with switching and semiconducting behavior. Inorg. Chem. Front. 2020, 7, 1239-1249.
(3) Bistable State of Protons for Low-Voltage Memories. J. Am. Chem. Soc. 2020, 142, 9000-9006.
(2) Anion-Regulated Molecular Rotor Crystal: The First Case of a Stator-Rotator Double Switch with Relaxation Behavior. J. Phys. Chem. Lett. 2019, 10, 4237-4244.
(1) Higher-Temperature Dielectric Molecular Motor Induced by Unusual Chair-to-Rotator Motion. Inorg. Chem. 2019, 58, 4600-4608.
研究生(含合作指导):
2025级: 叶楼凯(博士),潘磊(硕博连读),王杰,李念阳,金子健
2024级:倪皓飞(博士),杜茶会,诸葛鹏骋,刘基,肖曾杰
2023级:李林梅,杨宜萱,潘磊(已转博)
2022级:朱明(毕业去向:浙江仙居中学)
2021级:罗青丰(毕业去向:龙游职高)
本科生:
叶楼凯(2021级,毕业去向:直博浙师大); 周齐昉(2023级); 王惠楠(2024级); 房伊静(2024级); 王作宇(2024级);
本人所在分子铁电课题组具有充足的研究生招生名额(双国家优青课题组,负责人:付大伟,张毅),期待优秀的青年师生加入团队共同进步。
本人长期沉迷于原神、古墓丽影、刺客信条等3d大作游戏,希望招收的学生也是能学能玩的,愿意独立思考、喜欢探索,愿意学习新技术新方法,能喜欢发现问题并解决问题。
科研就是一种思考性加养成类游戏,不要求特别优秀,但需要耐糙。若你天赋异禀,毕业之前能把我培养成教授博导,我必然会非常非常开心。
长期灌水垃圾期刊论文会使人养成惰性,拒绝灌水,立志做高质量有影响力的papers!
Email:zhangzhixu@zjnu.edu.cn



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