个人简介

陈强

18新利体育 特聘教授,博士生导师,国家海外高层次青年人才

2014年硕士毕业于南开大学,师从郑健禺教授;2019年博士毕业于德国马克斯普朗克高分子研究所,师从Klaus Müllen教授(德国科学院院士);随后在牛津大学化学系从事博士后研究,合作导师为Harry Anderson教授(英国皇家学会院士);于20234月加入18新利体育 功能纳米与软物质研究院(FUNSOM)。长期从事于石墨烯纳米片、单分子导线和金属有机配合物的精准可控制备、光电性能调控及应用研究。目前,已在国际著名权威期刊发表研究论文36篇,其中第一作者论文17篇,包括Nat. Chem.2篇)J. Am. Chem. Soc.5篇)Angew. Chem. Int. Ed.4篇)等。获欧洲发明专利授权2项。曾获国家优秀自费留学生奖学金、德国科学基金会Walter Benjamin奖学金等奖励和荣誉。

研究领域

长期从事于有机合成化学研究,在新型纳米石墨烯材料的结构设计、可控合成、光电磁性能与应用研究方面取得了原创性成果。主要学术贡献有:1)开发了一系列强荧光性石墨烯分子的设计与合成方法,发现这类材料的受激发射与荧光闪烁性,系统研究了受激发射与边界结构和取代基团的关系,并将此类材料应用于有机激光器件、光传感器以及超高分辨率荧光成像等领域;2)发展了开壳层双自由基石墨烯分子的设计方法,实现了从全苯型闭壳层向非全苯型开壳层电子结构的转变及光电磁性能提升。合成了最大尺寸且具有强磁交换耦合作用的开壳层锯齿型边缘菱形石墨烯分子,并提出了增强磁交换耦合作用的结构设计策略,为能够应用于室温和高温自旋逻辑器件及单分子磁体的纳米石墨烯材料的设计提供了新思路;3)发展了卟啉稠合石墨烯纳米结构的精确合成方法,制备了具有全色谱吸收与强近红外光吸收性质的纳米石墨烯以及具有超高载流子迁移率的金属卟啉稠合石墨烯纳米带,为纳米石墨烯材料光电磁性能调控提供了新途径。

基本信息

头像

陈强  

职称:   教授

院部/部门:   功能纳米与软物质研究院

学历:   研究生

学位:   博士

毕业学校:   马克斯普朗克高分子研究所

毕业专业:   化学

联系方式

通讯地址:   苏州工业园区仁爱路199号18新利体育 功能纳米与软物质研究院909-3215

邮政编码:   215123

电子邮箱:   chenqiang@suda.edu.cn

联系电话:   0512-65880930

传真号码:  

办公地点:   苏州工业园区仁爱路199号18新利体育 功能纳米与软物质研究院909-3215

Copyright © 2011-201418新利体育 版权所有 18新利体育 信息化建设与管理中心技术支持

18新利备用网站

长期从事于有机合成化学研究,在新型纳米石墨烯材料的结构设计、可控合成、光电磁性能与应用研究方面取得了原创性成果。主要学术贡献有:1)开发了一系列强荧光性石墨烯分子的设计与合成方法,发现这类材料的受激发射与荧光闪烁性,系统研究了受激发射与边界结构和取代基团的关系,并将此类材料应用于有机激光器件、光传感器以及超高分辨率荧光成像等领域;2)发展了开壳层双自由基石墨烯分子的设计方法,实现了从全苯型闭壳层向非全苯型开壳层电子结构的转变及光电磁性能提升。合成了最大尺寸且具有强磁交换耦合作用的开壳层锯齿型边缘菱形石墨烯分子,并提出了增强磁交换耦合作用的结构设计策略,为能够应用于室温和高温自旋逻辑器件及单分子磁体的纳米石墨烯材料的设计提供了新思路;3)发展了卟啉稠合石墨烯纳米结构的精确合成方法,制备了具有全色谱吸收与强近红外光吸收性质的纳米石墨烯以及具有超高载流子迁移率的金属卟啉稠合石墨烯纳米带,为纳米石墨烯材料光电磁性能调控提供了新途径。

科研团队

本课题组依托迟力峰院士团队开展研究工作。

研究组现有助理研究员1名,在读博士生1名,硕士生6名。

每年招收化学方向博士后2-3名,博士生1-2名,硕士生3-4名。

Copyright © 2011-201418新利体育 版权所有 18新利体育 信息化建设与管理中心技术支持

论文

1.Chen Q.,#,* Lodi A.,# Zhang H.,# Gee A., Wang H., Kong F., Clarke M., Edmondson M., Hart J., OShea J., Stawski W., Narita A., Saywell A., Bonn M., Müllen K., Bogani L.,* Anderson L. H.,* “Porphyrin-Fused Graphene Nanoribbons”, ChemRxiv, 2023, DOI: 10.26434/chemrxiv-2023-ghvdb. Nat. Chem., 2024, in press, DOI: 10.1038/s41557-024-01477-1

2.Zhu X.,#Chen Q.,# Zhao H.,# Yang Q.,  Goudappagouda, Gelléri M., Ritz S., Ng D., Koynov K., Parekh H. S., Chetty Kumar V., Thakur Kumar B., Cremer C., Landfester K., Müllen K., Terenzio M., Bonn M., Narita A., and Liu Xiaomin, “Intrinsic Burst-Blinking Nanographenes for Super-Resolution Bioimaging”, J. Am. Chem. Soc., 2024, 146, 5195–5203

3.Chen Q., Giovannantonio Di M., Eimre K., Urgel I. J., Ruffieux P., Pignedoli A. C., Müllen K., Fasel R., Narita A., “On-Surface Interchain Coupling and Skeletal Rearrangement of Indenofluorene Polymers”, Macromol. Chem. Phys., 2023, 224, 2300345

4.Garcia-Orrit S., Vega-Mayoral V., Chen Q., Serra G., Paternò G. M., Cánovas E., Narita A., Müllen K., Tommasini M., Cabanillas-González J., “Nanographene-Based Decoration as a Panchromatic Antenna for Metalloporphyrin Conjugates”, Small, 2023, in press, DOI: 10.1002/smll.202301596

5.Zhu H., Chen Q., Rončević I., Christensen K. E., Anderson H. L., “Anthracene-Porphyrin Nanoribbons”, Angew. Chem. Int. Ed., 2023, 62, e20230703

6.Chen Q., Thompson A. L., Christensen K. E., Horton P. N., Coles S. J., Anderson H. L., “β,β-Directly Linked Porphyrin Rings: Synthesis, Photophysical Properties, and Fullerene Binding”, J. Am. Chem. Soc., 2023, 145, 11859−11865.

7.Biswas K.,# Soler D.,# Mishra S.,#Chen Q.,# Yao X.,# Sánchez-Grande A., Eimre K., Mutombo P., Martín C., Lauwaet K., Gallego M. J., Ruffieux P., Pignedoli A. C., Müllen K., Miranda R., Urgel I. José, Narita A., Fasel R., Jelínek P., Écija D., “Steering Large Magnetic Exchange Coupling in Nanographenes near the Closed-Shell to Open-Shell Transition”, J. Am. Chem. Soc.,2023, 145, 2968–2974. (# equal contribution.)

8.Wu M., Mühlinghaus M., Li X., Xu C., Chen Q., Zhang H., Müllen K., Chi L., “On-Surface Synthesis of Chevron-Shaped Conjugated Ladder Polymers Consisting of Benzo[a]azulene Units”, Acta Phys. -Chim. Sin., 2024, 40 (8), 2307024

9.Björk J.,# Sánchez‐Sánchez C.,#Chen Q.,# Pignedoli A C., Rosen J., Ruffieux P., Feng X., Narita A., Müllen K., Fasel R., “The Role of Metal Adatoms in a Surface‐Assisted Cyclodehydrogenation Reaction on a Gold Surface”, Angew. Chem. Int. Ed., 2022, 61, e2022123. (# equal contribution.)

10.Jin E., Fu S., Hanayama H., Addicoat A. M., Wei W., Chen Q., Graf R., Landfester K., Bonn M., Zhang I. K., Wang I. H., Müllen K., Narita A., “A Nanographene-Based Two-Dimensional Covalent Organic Framework as a Stable and Efficient Photocatalyst”, Angew. Chem. Int. Ed., 2022, 61, e20211405.

11.Paternò G. M.,#Chen Q.,# Mármol R. M.,# Guizzardi M., Bonal V., Kabe R., Barker A. J., Boj P. G., Chatterjee S., Ie Y., Villalvilla J. M., Quintana J. A., Scotognella F., Müllen K., Díaz-García M. A., Narita A., Lanzani G., “Excited States Engineering Enables Efficient Near-Infrared Lasing in Nanographenes”, Mater. Horiz., 2022, 9, 393-402. (# equal contribution.)

12.Paternò G. M.,Goudappagouda, Chen Q., Lanzani G., Scotognella F., Narita A., “Large Polycyclic Aromatic Hydrocarbons as Graphene Quantum Dots: from Synthesis to Spectroscopy and Photonics”, Adv. Optical Mater., 2021, 2100508.

13.Jin E., Yang Q., Ju C.,Chen Q., Landfester K., Bonn M., Müllen K., Liu X., Narita A., “A Highly Luminescent Nitrogen-Doped Nanographene as an Acid- and Metal-Sensitive Fluorophore for Optical Imaging”, J. Am. Chem. Soc., 2021, 143, 10403–10412. (Highlighted by Synfacts 2021, 17, 1093)

14.Mishra S.,# Yao X.,#Chen Q.,# Eimre Kristjan, Gröning O., Ortiz R., Di Giovannantonio M., Sancho-García J. C., Fernández-Rossier J., Pignedoli C. A., Müllen K., Ruffieux P., Narita A., Fasel R., “Giant Magnetic Exchange Coupling in Rhombus-Shaped Nanographenes with Zigzag Periphery”, Nat. Chem., 2021, 13, 581–586. (# equal contribution.)

15.Chen Q., Baumgarten M., Wagner M., Hu Y., Hou I, Narita A., Müllen K., “Dicyclopentaannelated Hexa-peri-hexabenzocoronenes with a Singlet Biradical Ground State”, Angew. Chem. Int. Ed., 2021, 60, 11300–11304.

16.Chang H., Liu H, Dmitrieva E.,Chen Q., Ma J., He P., Liu P., Popov A. A., Cao X-Y, Wang X-Y, Zou Y., Narita A., Müllen K., Peng H., Hu Y., “Furan-Containing Double Tetraoxa[7]helicene and Its Radical Cation”, Chem. Commun., 2020, 56, 15181-15184.

17.Xu X., Chen Q., Narita A., “Synthesis and Characterization of Dibenzo[hi,st]ovalene as a Highly Fluorescent Polycyclic Aromatic Hydrocarbon and Its π-Extension to Circumpyrene”, J. Syn. Org. Chem. Jpn., 2020, 78, 1094–1104.

18.Di Giovannantonio M., Chen Q., Urgel I. J., Ruffieux P., Pignedoli C. A., Müllen K., Narita A., Fasel R., “On-Surface Synthesis of Oligo(indenoindene)”, J. Am. Chem. Soc., 2020, 142, 12925–12929.

19.Liu X., Chen S., Chen Q., Gelleri S., Ritz S., Kumar S., Cremer C., Landfester K., Müllen K., Parekh S., Narita A., Bonn M., “Nanographene-Based Dyes as Stable, High-Brightness Probes for Super-Resolution Microscopy”, Angew. Chem. Int. Ed., 2020, 59, 496-502. (Selected as back cover)

20.Chen Q., Schollmeyer D., Müllen K., Narita A., “Synthesis of Circumpyrene by Alkyne Benzannulation of Dibrominated Dibenzo[hi,st]ovalene”, J. Am. Chem. Soc., 2019, 141, 19994-19999.

21.Fantuzzi P., Candini A., Chen Q., Dumslaff T., Müllen K., Narita A., Affronte M., “Color Sensitive Response of Graphene-Graphene Quantum Dot Photo-Transistor”,J. Phys. Chem. C, 2019, 123, 26490-26497.

22.Chen Q.,# Thoms S.,# Stöttinger S., Schollmeyer D., Müllen K., Narita A., Basché T., “Dibenzo[hi,st]ovalene as Highly Luminescent Nanographene: Efficient Synthesis via Photochemical Cyclodehydroiodination, Opto-electronic Properties and Single Molecule Spectroscopy”, J. Am. Chem. Soc., 2019, 141, 16439-16449. (# equal contribution. Highlighted by Synfacts 2019, 15, 1371)

23.Chen Q.,# Zajaczkowski W.,# Seibel J.,# Stöttinger S., Feyter S., Pisula W., Müllen K., Narita A., “Synthesis and Supramolecular Organization of Discotic Liquid Crystalline Dibenzo[hi,st]ovalene with Long-Range Helical Packing”, J. Mater. Chem. C, 2019, 7, 12898-12906. (# equal contribution. Invited article for 2019 Emerging Investigators Themed Issue and selected as inside Front Cover.)

24.Urgel I. J., Di Giovannantonio M., Gandus G., Chen Q., Liu X., Hayashi H., Ruffieux P., Decurtins S., Narita A., Passerone D., Yamada H., Liu S.-X., Müllen K., Pignedoli A. C., Fasel R., “Overcoming Steric Hindrance in Aryl-Aryl Homocoupling via On-Surface Copolymerization”, ChemPhysChem, 2019, 20, 2360-2366.

25.Hu Y., Paternò G. M., Wang X.-Y., Wang X.-C., Guizzardi M., Chen Q., Schollmeyer D., Cao X.-Y., Cerullo G., Scotognella F., Müllen K., Narita A., “π-Extended Pyrene-Fused Double [7]Carbohelicene as a Chiral Polycyclic Aromatic Hydrocarbon”, J. Am. Chem. Soc., 2019, 141, 12797–12803.

26.Giovannantonio M., Eimre K., Yakutovich A., Chen Q., Mishra S., Urgel J., Pignedoli C., Ruffieux C., Müllen K., Narita A., Fasel R., “On-Surface Synthesis of Indeno[2,1-b]fluorene Polymers with Antiaromatic and Open-Shell Characters”, J. Am. Chem. Soc., 2019, 141, 12346–12354.

27.Chen Q., Wang D., Baumgarten M., Schollmeyer D., Müllen K., Narita A., “Regioselective Bromination of Dibenzo[hi,st]ovalene and Its Post-Synthetic Functionalization”, Chem. Asian J., 2019, 14, 1703–1707. (Invited article for Special Issue: π-Conjugated Compounds for Molecular Materials and highlighted in ChemistryViews, 23, MAR, 2019).

28.Narita A., Chen Z. P.,#Chen Q.,# Müllen K., “Solution and On-Surface Synthesis of Structurally Defined Graphene Nanoribbons as a New Family of Semiconductors”, Chem. Sci., 2019, 10, 964–975. (# equal contribution)

29.Paternò G. M., Moretti L., Barker J. A., Chen Q., Müllen K., Narita A., Cerullo G., Scotognella F., Lanzani G., “Pump–Push–Probe for Ultrafast All-Optical Switching: The Case of a Nanographene Molecule”, Adv. Funct. Mater., 2019, 29, 1805249.

30.Paternò G. M., Nicoli L., Chen Q., Müllen K., Narita A., Lanzani G., Scotognella F., “Modulation of the Nonlinear Optical Properties of Dibenzo[hi,st]ovalene by Peripheral Substituents”, J. Phys. Chem. C, 2018, 122, 25007–25013.

31.Chen Q., Brambilla L., Daukiya L., Mali K. S., De Feyter S., Tommasini M., Müllen K., Narita A. “Synthesis of Triply Fused Porphyrin-Nanographene Conjugates” Angew. Chem. Int. Ed., 2018, 57, 11233–11237. (Highlighted by Synfacts 2018, 14, 1032)

32.Coles D. M.#, Chen Q.,# Flatten L. C., Smith J. M., Müllen K., Narita A., Lidzey D. G., “Strong Exciton-Photon Coupling in a Nanographene Filled Microcavity”, Nano Lett., 2017, 17, 5521–5525. (# equal contribution)

33.Liu Z., Wang H. I., Narita A., Chen Q., Mics Z., Turchinovich D., Kläui M., Bonn M., Müllen K., “Photoswitchable Micro-Supercapacitor Based on a Diarylethene-Graphene Composite Film” J. Am. Chem. Soc., 2017, 139, 9443–9446.

34.Paternò G. M., #Chen Q.,# Wang X. Y., Liu J., Motti S. G., Petrozza A., Feng X., Lanzani G., Müllen K, Narita A., Scotognella F., “Synthesis of Dibenzo[hi,st]ovalene and Its Amplified Spontaneous Emission in a Polystyrene Matrix”, Angew. Chem. Int. Ed., 2017, 56, 6753–6757. (# equal contribution)

35.Chen Q., Zhu Y. Z., Fan Q. J., Zhang S. C., Zheng J. Y., “Simple and Catalyst-Free Synthesis of meso-O-, -S-, and -C-Substituted Porphyrins”, Org. Lett., 2014, 16, 1590–1593.

荣誉奖励

  • 1、优秀自费留学生奖学金,国家留学基金委,2018
  • 2、Walter Benjamin奖学金,德国科学基金会,2019
Copyright © 2011-201418新利体育 版权所有 18新利体育 信息化建设与管理中心技术支持

开授课程

将为本科生和研究生开设专业选修课程《高等有机化学》,2学分/36学时。

招生信息

课题组长期招聘博士后、博士(2024届已满)和硕士研究生(2024届已满)

欢迎具有有机化学和光电材料背景的博士后、研究生和本科生加盟。

课题组将提供优厚的个人待遇并为其创造良好的职业发展机会。

有意者请发邮件至chenqiang@suda.edu.cn咨询。

Copyright © 2011-201418新利体育 版权所有 18新利体育 信息化建设与管理中心技术支持