方园 教授-尊龙凯时

发布时间:2022-10-05访问量:18333



方园 特聘教授 博士生导师。

2011年获加拿大康考迪亚大学生物化学专业学士学位;2013年获加拿大康考迪亚大学化学硕士学位(导师: prof. louis cuccia);2017年获比利时天主教鲁汶大学化学博士学位 (导师: prof. steven de feyter院士);2017至2020年于加拿大麦吉尔大学,化学院从事博士后研究 (合作导师: prof. dima perepichka);2021年加盟苏州大学功能纳米与软物质研究院任教授,博士生导师。


研究领域:

本课题组主要聚焦于超分子化学与共价有机框架材料(cofs)的合成及功能化调控。核心研究领域是表面纳米化学。有一句俗话叫眼见为实,我们使用具有超高分辨率的扫描探针显微技术(stm & afm),来揭示分子和二维材料在表面上的结构之美及其探索结构与功能之间的构效关系。研究方向包括:

  • 仿生二维功能cof材料的创新设计与可控制备

  • 表界面限域化学与低维拓扑纳米材料的精准构筑

  • 界面超分子化学与智能可调控材料

  • 手性纳米材料在光电子,先进传感技术与ciss效应中的应用


主要学术成绩:

入选国家高层次人才计划青年项目。以第一作者在nature chemistry、j. am. chem. soc. 2 篇 、adv. funct. mater.等化学领域权威期刊发表论文。多篇论文被选为期刊的封面文章。申请人科研工作受到国内外同行广泛认可,受邀在国际学术会议加拿大魁北克功能材料中心学术年会上作特邀报告,并获得最佳演讲奖。受邀在加拿大康考迪亚大学固体表面和界面高级专业课上担任客座教授。应邀兼任community board member of nanoscale horizons (if=10.989)、rare metal(jcr一区,if=9.6)和《稀有金属》(中文核心)青年编委、加拿大魁北克功能材料中心附属委员。


回国前主要学术荣誉和奖学金:

2020: 入选加拿大麦吉尔大学百年荣誉学者名单(自建校以来化学系共被载入31人,成为继李朝军院士之后的来自中国大陆的第二位荣誉学者,https://www.mcgill.ca/researchhonours/people/field_mprofile_department/department%20of%20chemistry)。

2019: 获得加拿大皇家科学院最高荣誉之一的alice wilson奖(加拿大自然科学领域年度仅1位)也是首位获此殊荣的中国学者。

2019: 荣获加拿大自然科学与工程研究委员会nserc博士后奖学金(全国女性排名第一)

04/2019-03/2021:nserc postdoctoral fellowships award

11/2015-10/2016:fqrnt internship scholarship

01/2013-03/2013:mels student mobility bursary

01/2013-03/2013:fqrnt international internship scholarship

05/2009-08/2009:csacs undergraduate summer research scholarship

回国后获得主要荣誉和主持项目情况

2024年  国家自然科学基金-面上项目

2023年  nanoscale emerging investigator

2022年  姑苏创新创业领军人才

2022年  国家自然科学基金-青年项目

2022年  国家自然科学基金-优秀青年科学基金(海外)

2021年  江苏省科技项目-青年基金项目


招生方向:

本课题组拟招收物理,化学,和材料方向研究生和博士生。要求对科学充满好奇,动手能力强,具有坚持不懈,不轻言放弃和团队合作精神。本课题组与多个世界著名研究课题组保持长期合作关系,可以为在读研究生提供出国访学,为优秀毕业生提供推荐留学的机会。尊龙凯时的联系方式:18217381272(微信同号);


招聘信息:

因课题组发展需要,现招聘1-2名博士后研究人员,研究方向包括但不限于:有机合成与共价有机框架材料(cofs)的设计与合成,手性相关研究,扫描探针显微技术(spm)。本课题组提供优厚的薪酬待遇,并为优秀的博士后研究人员提供出国访学的机会。欢迎具有相关研究背景的优秀博士申请。有意者请发送简历至


selective publications(*通讯作者,#共同第一作者):

  1. du, l.; zhou, q.; he, q.; liu, y.; shen, y.; lv, h.; sheng, l.; cheng, t.; yang, h.; wan, l.*; fang, y.*; ning, w.*, efficient circularly polarized luminescence and bright white emission from hybrid indium-based perovskites via achiral building blocks. adv. funct. mater. 2024, 34 (28), 2315676.

  2. fang, y.; ghijsens, e.; ivasenko, o.*; cao, h.; noguchi, a.; mali, k. s.*; tahara, k.; tobe, y.*; de feyter, s.*, dynamic control over supramolecular handedness by selecting chiral induction pathways at the solution–solid interface. nat. chem. 2016, 8 (7), 711-717.

  3. fang, y.; lindner, b. d.; destoop, i.; tsuji, t.; zhang, z.; khaliullin, r. z.; perepichka, d. f.; tahara, k.; feyter, s. d.*; tobe, y.*, stereospecific epitaxial growth of bilayered porous molecular networks. j. am. chem. soc. 2020, 142 (19), 8662-8671.

  4. jadhav, t.#; fang, y.#; liu, c. h.#; dadvand, a.; hamzehpoor, e.; patterson, w.; jonderian, a.; stein, r. s.; perepichka, d. f.*, transformation between 2d and 3d covalent organic frameworks via reversible 2 2 cycloaddition. j. am. chem. soc. 2020, 142 (19), 8862-8870.

  5. he, q.; feng, j.; du, l.; shen, y.; chen, h.; yan, c.; kang, s.; wang, h.; yin, y.; wan, l.; li, y.; wang, y.; fang, y.*; ning, w.*, highly emissive chiral indium‐based perovskite single crystals for efficient optoelectronic applications. adv. opt. mater. 2024, 12 (26), 2400682.

  6. xie, x.; chang, x.; kang, s.; fang, y.*; ivasenko, o.*, micro-patterning of c–c covalently-bound grafts by mechanochemical imprint lithography. chem. commun. 2024, 60 (40), 8375-8378.

  7. amato, g.; vargas perdomo, n.; zhang, n.; xie, x.; ji, j.; bolukbas, c.; wen, z.; naccache, r.; fang, y.*; rodríguez burbano, d. c.*; ivasenko, o.*; cuccia, l.*, a pedagogical approach to assemble and characterize paper-based triboelectric nanogenerators. j. chem. educ. 2023, 100 (12), 4917-4924.

  8. fang, y.; ivasenko, o.; sanz-matias, a.; mali, k. s.; tahara, k.; tobe, y.; de feyter, s.*, spontaneous and scanning-assisted desorption-adsorption dynamics in porous supramolecular networks at the solution-solid interface. nanoscale 2023, 15 (9), 4301-4308.

  9. yu, l.-h.; cai, z.-f.; verstraete, l.; xia, y.; fang, y.; cuccia, l.; ivasenko, o.*; de feyter, s.*, defect-engineered surfaces to investigate the formation of self-assembled molecular networks. chem. sci. 2022, 13, 13212-13219.

  10. fang, y.; heydari, z.; liu, c.; zhang, n.; cuccia, l. a.; ivasenko, o.; perepichka, d. f.*, glaser coupling of substituted anthracene diynes on a non-metallic surface at the vapor-solid interface. chem. res. chin. univ. 2021, 37 (5), 1143-1148.

  11. sun, k.; fang, y.; chi, l.*, on-surface synthesis on nonmetallic substrates. acs mater. lett. 2021, 3 (1), 56-63.

  12. lakshmi, v.; liu, c.-h.; rajeswara rao, m.; chen, y.; fang, y.; dadvand, a.; hamzehpoor, e.; sakai-otsuka, y.; stein, r. s.; perepichka, d. f.*, a two-dimensional poly(azatriangulene) covalent organic framework with semiconducting and paramagnetic states. j. am. chem. soc. 2020, 142 (5), 2155-2160.

  13. mulay, s. v.#; dishi, o.#; fang, y.#; niazi, m. r.; shimon, l. j. w.; perepichka, d.*; gidron, o.*, a macrocyclic oligofuran: synthesis, solid state structure and electronic properties. chem. sci. 2019, 10 (37), 8527-8532.

  14. jadhav, t.; fang, y.; patterson, w.; liu, c.-h.; hamzehpoor, e.; perepichka, d. f.*, 2d poly(arylene vinylene) covalent organic frameworks via aldol condensation of trimethyltriazine. angew. chem., int. ed. 2019, 58 (39), 13753-13757.

  15. cui, d.#; fang, y.#; maclean, o.; perepichka, d. f.*; rosei, f.*; clair, s.*, covalent organic frameworks from a monomer with reduced symmetry: polymorphism and sierpiński triangles. chem. commun. 2019, 55 (90), 13586-13589.

  16. fang, y.; tahara, k.; ivasenko, o.; tobe, y.; de feyter, s.*, structural insights into the mechanism of chiral recognition and chirality transfer in host–guest assemblies at the liquid–solid interface. j. phys. chem. c. 2018, 122 (15), 8228-8235.

  17. sanz-matias, a.*; ivasenko, o.; fang, y.; de feyter, s.; tahara, k.; tobe, y.; harvey, j. n.*, computational insight into the origin of unexpected contrast in chiral markers as revealed by stm. nanoscale 2018, 10 (4), 1680-1694.

  18. goronzy, d. p.; ebrahimi, m.; rosei, f.; arramel; fang, y.; de feyter, s.; tait, s. l.; wang, c.; beton, p. h.; wee, a. t. s.; weiss, p. s.*; perepichka, d. f.*, supramolecular assemblies on surfaces: nanopatterning, functionality, and reactivity. acs nano 2018, 12 (8), 7445-7481.

  19. fang, y.; cibian, m.; hanan, g. s.; perepichka, d. f.; de feyter, s.; cuccia, l. a.*; ivasenko, o.*, alkyl chain length effects on double-deck assembly at a liquid/solid interface. nanoscale 2018, 10 (31), 14993-15002.

  20. rao, m. r.; fang, y.; de feyter, s.; perepichka, d. f.*, conjugated covalent organic frameworks via michael addition-elimination. j. am. chem. soc. 2017, 139 (6), 2421-2427.

  21. kynaston, e. l.; fang, y.; manion, j. g.; obhi, n. k.; howe, j. y.; perepichka, d. f.*; seferos, d. s.*, patchy nanofibers from the thin film self-assembly of a conjugated diblock copolymer. angew. chem., int. ed. 2017, 56 (22), 6152-6156.

  22. mckeown, g. r.; fang, y.; obhi, n. k.; manion, j. g.; perepichka, d. f.*; seferos, d. s.*, synthesis of macrocyclic poly(3-hexylthiophene) and poly(3-heptylselenophene) by alkyne homocoupling. acs macro letters 2016, 5 (10), 1075-1079.

  23. lee, s.-l.; fang, y.; velpula, g.; cometto, f. p.; lingenfelder, m.; müllen, k.; mali, k. s.*; de feyter, s.*, reversible local and global switching in multicomponent supramolecular networks: controlled guest release and capture at the solution/solid interface. acs nano 2015, 9 (12), 11608-11617.

  24. lee, s.-l.; adisoejoso, j.; fang, y.; tahara, k.; tobe, y.; mali, k. s.*; de feyter, s.*, efficient screening of 2d molecular polymorphs at the solution-solid interface. nanoscale 2015, 7 (12), 5344-5349.

  25. ghijsens, e.; cao, h.; noguchi, a.; ivasenko, o.; fang, y.; tahara, k.*; tobe, y.*; de feyter, s.*, towards enantioselective adsorption in surface-confined nanoporous systems. chem. commun. 2015, 51 (23), 4766-4769.

  26. fang, y.; salame, n.; woo, s.; bohle, d. s.; friscic, t.*; cuccia, l. a.*, rapid and facile solvent-free mechanosynthesis in a cell lysis mill: preparation and mechanochemical complexation of aminobenzoquinones. crystengcomm 2014, 16 (31), 7180-7185.

  27. fang, y.; nguyen, p.; ivasenko, o.; aviles, m. p.; kebede, e.; askari, m. s.; ottenwaelder, x.; ziener, u.; siri, o.; cuccia, l. a.*, charge-assisted hydrogen bond-directed self-assembly of an amphiphilic zwitterionic quinonemonoimine at the liquid-solid interface. chem. commun. 2011, 47 (40), 11255-11257.


 

 

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