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张强

发布日期:2024-03-17    浏览次数:

【硕士生导师简介】

张强

出生年月

1985.10

博士

副教授

 

15862534350

电子邮箱

qzhang@mail.usts.edu.cn

【个人简介】

2008年毕业于南京理工大学制药工程专业获学士学位。同年保送至南京理工大学化工学院应用化学国家级重点学科进行硕博连读,20137月获南京理工大学工学博士学位,博士论文获南京理工大学2011年度博士研究生优秀论文项目资助。期间参与完成国家自然科学基金和江苏省自然科学基金2项,并获得2012年博士研究生国家奖学金。

20138月至今在苏州科技大学化生学院从事教学科研工作,主讲《有机化学》、《精细化学品化学》等基础主干课程,负责应用化学专业《综合实验》等实验课程。主要从事绿色有机催化、药物中间体的绿色合成及有机功能材料等研究,近年来在Angew Chem Int Ed, Green   Chem, J Catal, Cell Reports Physical Science, Inorg Chem, Org Chem Front, Catal Sci Technol等发表SCI论文30余篇,其中发表在Green Chemistry上的一篇论文入选为2014年度英国皇家化学会期刊“Top   1%高被引作者”榜单论文,国家发明专利授权1项。主持江苏省自然科学基金、苏州科技大学自然科学基金及横向课题各1项,指导国家及省大学生创新计划项目3项,以及作为核心成员参与国家自然基金2项、省自然基金1项以及省高校自然基金3项,且入选2016年江苏省双创博士科技副总类资助对象及2021张家港市青博荟企业创新顾问人才计划

【研究领域】

1绿色有机合成与催化:金属络合物催化多相化策略;水相、离子液体、PEG及无溶剂等绿色体系中的有机合成反应等。

2)精细化学品的绿色合成:药物及中间体、阻燃剂等精细品的绿色合成方法及工艺开发。

3)有机功能材料设计合成及应用:无机粉体(介孔硅胶、纳米磁球等)表面功能化、共价有机框架COF等设计合成,应用领域侧重有机催化反应、环境污染物吸附分离及催化降解等。


【项目与获奖】

(一)、承担的科研项目

1)假均相磁性纳米催化剂的设计及催化性能研究,江苏省自然基金项目,20万,主持。

2季戊四醇笼状磷酸酯合成工艺开发,横向课题,5万,主持。

3)功能多孔有机聚合物的设计合成及其不对称可见光光氧化还原催化性能研究,国家自然基金项目,23,参加。

4具有温控性质的离子液体负载金属配合物催化剂的设计、合成及应用,国家自然基金项目,19,参加。

5非富勒烯受体有机光伏电池中分子取向调控与光电特性研究,国家自然基金项目,30万,参加。

6)离子型多肽缩合剂异构体定向转化与固定床氢化技术研究开发,横向课题,50万,参加。

(二)、获奖成果

1张家港市青博荟企业创新顾问人才计划,2021年;

2江苏省双创博士(科技副总类),2016年;

3)英国皇家化学会期刊“Top   1%高被引作者榜单论文,2014年;

4博士研究生国家奖学金,2012年;

5)指导第十七届全国大学生化工设计竞赛二等奖,2023年。


【论文、论著及授权专利】

(1) Qiang   Zhang, et al. Tunable ABC-stacked fluorescent covalent organic frameworks for   nitroaromatic detection. Microchemical   J, 2025, 212, 113498.

(2) Qiang Zhang, et al. A novel P/N synergistic flame retardant   based on a DOPO derivative with sodium sulfonate group for aqueous acrylic   coatings. Mater Today Commun, 2025,   46, 112823.

(3) Qiang Zhang, et al. Cascade Pd-Catalyzed Azide-Isocyanide   Cross Coupling/Cyclization/Lactamization Reactions for the Synthesis of   Tricyclic Guanidine-Containing Polyheterocycles. J. Org. Chem. 2025, 90, 2707−2716.

(4) Qiang Zhang, et al. One-pot Ugi-azide and Heck reactions for   the synthesis of heterocyclic systems containing tetrazole and   1,2,3,4-tetrahydroisoquinoline. Beilstein J Org Chem, 2024, 20,   912–920.

(5) Qiang Zhang, et al. Radical-Mediated Trifunctionalization   Reactions. Molecules, 2024, 29,   3620.

(6) Qiang Zhang, et al. Th6Based   Multicomponent Heterometallic Metal-Organic Frameworks Featuring   6,12-Connected Topology for Iodine Adsorption. Inorg. Chem. 2023, 62, 15346−15351

(7) Qiang Zhang, et al. Remote Radical 1,3-, 1,4-, 1,5-, 1,6- and   1,7-Difunctionalization Reactions. Molecules   2023, 28, 3027.

(8) Qiang Zhang, et al. Bio-based tannic acid as a raw material   for membrane surface modification. Desalination   555 (2023) 116535

(9) Qiang Zhang, et al. N, Si-codoped carbon-based iron catalyst   for efficient, selective synthesis of pyrroles from nitroarenes: The role of   Si doping. Journal of Catalysis 2022,   416, 39-46

(10) Qiang Zhang, et al. Stepwise Asymmetric Allylic   Substitution-Isomerization Enabled Mimetic Synthesis of Axially Chiral   B,N-Heterocycles. Angew. Chem. Int. Ed.   2022, e202210456

(11) Qiang Zhang, et al. Recent advances in the catalytic   asymmetric construction of atropisomers by central-to-axial chirality   transfer. Org. Chem. Front. 2022, 9,   2280-2292

(12) Qiang Zhang, et al. Asymmetric allylic   substitution-isomerization for accessing axially chiral vinylindoles by intramolecular   stacking interactions. Cell Reports   Physical Science 2022, 3, 101005

(13) Qiang Zhang, et al. One-pot oxidant-free   dehydrogenation-Knoevenagel tandem reaction catalyzed by a recyclable   magnetic base-metal bifunctional catalyst. Applied Organometallic Chemistry, 2020, 34:e5897

(14) Qiang Zhang, et al. Morphology-controllable fabrication of   Ag@MoS2 composites with improved antioxidant activities at low Ag loading. Colloids and Surfaces A, 2020, 596:124722

(15) Qiang Zhang, et al. Covalently anchored tertiary amine   functionalized ionic liquid on silica coated nano-Fe3O4   as a novel, efficient and magnetically recoverable catalyst for the   unsymmetrical Hantzsch reaction and Knoevenagel condensation. RSC Advances, 2017, 7: 53861-53870

(16) Qiang Zhang, et al. Silica-coated nano-Fe3O4-supported   iminopyridine palladium complex as an active, phosphine-free and magnetically   separable catalyst for Heck reactions. Applied   Organometallic Chemistry, 2017, 31: e3608

(17) Qiang Zhang, et al. Facile One-Pot Synthesis of Amidoalkyl   Naphthols and Benzopyrans Using Magnetic Nanoparticle-Supported Acidic Ionic   Liquid as a Highly Efficient and Reusable Catalyst. Catalysts, 2017, 7: 351

(18) Qiang Zhang, et al. Synthesis and properties of   dicarbazolyltriphenylethylene-substituted fluorene derivatives exhibiting   aggregation-induced emission enhancement. Heterocyclic   Communications. 2017, 23: 15-21

(19) Qiang Zhang, et al.   5-(N-Ethylcarbazol-3-yl)thiophene-2-carbaldehyde(ECTC): a novel fluorescent   sensor for ferric ion.. Heterocyclic   Communications, 2016, 22: 287-290

(20) 张强*, 李继航, 赵鑫. 磁性纳米粒子负载亚胺吡啶钯催化Suzuki反应研究. 有机化学, 2016, 36: 130-136

(21) Qiang Zhang, et al. “Click”   magnetic nanoparticle-supported palladium catalyst: a phosphine-free, highly   efficient and magnetically recoverable catalyst for Suzuki-Miyaura coupling   reactions. Catalysis Science & Technology, 2013, 3: 235-243

(22) Qiang Zhang, et al. Recyclable palladium() imino-pyridine complex   immobilized on mesoporous silica as a highly active and recoverable catalyst   for Suzuki-Miyaura coupling reactions in aqueous medium. Tetrahedron, 2013, 69: 447-454

(23) Qiang Zhang, et al. A   magnetic nanoparticle supported dual acidic ionic liquid: a   ‘quasi-homogeneous’ catalyst for the one-pot synthesis of benzoxanthenes, Green Chemistry, 2012, 14:   201-208

(24) Qiang Zhang, et al. A silica gel supported dual acidic ionic liquid: an efficient and   recyclable heterogeneous catalyst for the one-pot synthesis of amidoalkyl   naphthols, Green Chemistry, 2010,   12: 2246-2254

以上资料更新日期:202512