苏成勇

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苏成勇教授忠诚党的高等教育事业,热爱国家和民族,对待工作兢兢业业,对待同事谦虚热情,对待学生言传身教、以身作则。在1996年刚到中山大学就积极加入中国共产党,是一位有十多年党龄的青年教师,在工作中一直以党员的标准严格要求自己,发挥模范带头作用,将对党和国家的忠诚和热爱体现在实际工作之中,经常是不分节假日,在实验室工作到晚上关门为止。在国外深造期间,一直坚持指导研究生科研与学位论文工作,仍然以中山大学为完成单位发表了多篇学术论文,并在学院需要的时刻及时回国服务。
中文名
苏成勇
外文名
Cheng-Yong Su
国    籍
中国
出生地
内蒙
出生日期
1968年10月
逝世日期
——
职    业
高校教师
毕业院校
兰州大学
信    仰
共产主义
主要成就
教育部自然科学奖一等奖(2007年)
中国化学会"青年化学奖"(2000年)
代表作品
《配位超分子结构化学基础与进展》

苏成勇个人简介

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(Cheng-Yong Su), 教授,博士生导师,[1] 
籍贯:甘肃民勤,1968年10月出生于内蒙。主要学术简历:
学士 (1991), 兰州大学
博士 (1996), 兰州大学
博士后 (1996-1998),中山大学;( 2002-2003),美国南卡罗来纳大学
洪堡学者(2001-2002),德国斯图加特大学
短期访问学者(1998-1999),香港中文大学
副教授 (1998-2004),博导(2003),教授(2004),中山大学
凭借任劳任怨的工作态度和持之以恒的钻研精神,经过十年多艰苦的努力,终于成长为化学院教学、科研并重的青年骨干,取得优异的成绩。
自97年博士后尚未出站起,苏成勇博士就一直承担第一线教学与课程建设任务,是目前化学院青年科研骨干中少数坚持上近200人的本科生基础大课的教师之一。他承担的《结构化学》课程是化学院公认难度最大的化学骨干课程之一,学生普遍对该课程具有畏难心理。但他善于将教学内容与科研前沿知识贯彻起来,深入浅出,寓教于乐,取得很好的教学效果,深受学生喜爱,在学校通过学生匿名打分组织的全校课程评估中名列前茅。目前已将《结构化学》建设为校级精品课程,获得学校教学改革项目资助,正在向省级精品课程建设方向努力。积极组织物理化学二级学科的学科建设,已获广东省重点学科。他同时参与国家本科生能力提高项目,指导本科生创新化学试验、本科生毕业论文,积极组织、参与青年人才培养工作,先后为硕、博士研究生讲授《现代物理化学专题》、《超分子化学与物理》、《化学前沿进展》等专业必修和选修课程,讲授前沿性学科内容,培养研究生的科研兴趣和理论素质。在研究生科研指导中,他注重引导学生的创新精神和独立工作能力,循循善诱;生活中平易近人,做学生的良师益友,强调研究生思想素质与品德培养。他同时注重培养青年教师,将年轻的副教授和讲师组织到研究团队中,并进一步培养他们的独立科研能力与团队合作精神。目前已经协助或独自培养博士生6人,硕士生7人,在读硕、博士生10余人,多名硕士研究生获得硕博联读资格。已培养的硕、博士毕业生中有三人已获得教授职称,一人获得副教授职称,四人在美国深造。
在科研方面,苏成勇作为化学院年轻的学术带头人,近年主持了多项国家、教育部、科技部、广东省自然科学基金, 在配位超分子化学的分子与晶体工程、固体与纳米材料物理化学等领域取得一系列创新性重要成果和优异的学术成绩,并于近两年分别获得“国家杰出青年基金”、教育部“长江学者奖励计划”、教育“部新世纪优秀人才支持计划”、广东省“千百十人才工程”(省级)等重要人才计划以及科技部国家重点基础研究发展 “973” 计划项目、国家基金委重点科研基金项目的资助。
在科研、教学工作之余,苏成勇教授还积极参与组织与社会工作。1997-2000年期间担任广东省博士后研究人员联谊会秘书长,热心为广大博士后服务。四年期间,主持联谊会日常工作并组织多次重要的会议、活动,如与北京博士后联谊会、汕头市政府联合筹建“京粤博士后汕头科技开发基地”等工作。目前担任物化所所长,全心全意为师生服务,积极开展科研项目组织、学科建设、人才引进、研究生培养、国际合作等细致工作。近两年着力整合物理化学研究所科研、教学力量,并大力引进人才,培养年轻教师,积极组织科研项目,团结合作,协同攻关,形成了一支年轻有为,生机活泼,富有创新精神,勇于承担重大项目,完全有能力开展国际先进水平和创新性研究的学术梯队。在较短的时间内,就使得物化所在科研、学科建设方面不断走上新的台阶,科研经费成倍增长,人才队伍不断壮大,多方面取得历史性突破,极大地提升了物化所在国内高校相同学科间的竞争力和影响力。

苏成勇研究领域与兴趣

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在长期的科研实践中,苏成勇教授逐步组建了一支包括教授、副教授、讲师、博士后、硕博士研究生在内的近二十人的、团结向上、富有创新精神的研究队伍,在学科前沿开展了大量基础性和探索性工作,研究成果具有国际领先水平和创新性,在国内外同行学术界有很强的影响力。与他合作的美国、德国、新加坡、香港等地著名学者对他均有很高的评价,有三名外国教授应他之邀担任中山大学客座教授,他们有多篇合作论文发表并有联合培养博士研究生。经过多年坚持不懈的努力,苏成勇教授获得了多项重要创新性成果,具有积极的科学与社会经济意义,主要包括:
1. 超分子结构化学,主要涉猎配位超分子结构多样性中的超分子类质同构与同质异构化。
2. 配位超分子化学,主要涉猎笼、管、环状金属超分子的分子工程与低、高维金属配位聚合物的晶体工程。
3. 材料物理与化学,主要涉猎功能分子与无机-有机杂化分子固体材料与纳米材料。
4. 建立了一些纳米尺度分子工程的新组装方法并提出设计新思想,阐明了一些结构组装机理和模板调控机制。包括:1)提出配体分子夹设计思想,结合金属中心对称性选择,建立了高效构造热力学稳定金属分子笼的新方法;2)通过溶液热力学、动力学研究,确立了金属分子笼的调控机制与组装机理;3)提出互补组装法构造具有相同拓扑结构的金属分子笼,第一次发现三方金属分子笼中寄宿金属配合物的现象。利用以上方法,组装出系列具有旋转对称性的新颖多边形或棱柱型分子笼,可识别并选择性吸附客体分子。另外,还组装出系列箱形、书形、椅形金属超分子,为特定外形金属分子构筑体的设计合成提供了思路。阐述这些设计思想的工作在JACS,Angew. Chem., Inorg. Chem., Dalton Trans.等著名期刊发表了一系列高水论文,并被国际同行大量引用并在综述、进展、专著中多次介绍或评述,有关方法被在权威综述中选做典型合成方法或客体分子识别范例。这些规则金属超分子构筑体被期望在分子识别、分离、传输,分子器件、分子机器以及选择催化等方面具有重大科学与社会经济意义。尽管这一研究领域在国际上发展异常迅速,但在国内较少有人问津。该课题组克服种种困难,进行了艰苦的探索,组装出系列独具结构特色的纳米分子轮、箱、笼、环等等分子构筑体,提出新的组装策略与分子设计思想,阐明了组装机理和小分子吸附现象,引起国际同行的巨大兴趣,被广泛引用和评述,部分成果具有开创性的科学意义,也具有作为微型反应器、催化器、分子容器等方面的现实应用价值。
5. 建立了一些微纳配位空间晶体工程的结构模型并提出新的结构概念,阐明了一些结构转化机理和组装规律。包括: 首次提出“超分子位置异构”概念;第一次发现梯形结构 Borromean 二维拓扑网状结构模型;通过溶液热力学证实“开环超分子异构”机理,阐明联系封闭型零维结构与多维开放型结构的结构转化机理;明确报道了配位聚合物中的(3,6)拓扑网结构模型; 得到第一例非手性单股螺旋配位聚合物; 发现三角架配体C3构象手性在金属-配体作用和氢键等超分子识别下的手性转换与手性传递现象;阐明芳环堆积作用控制的配位聚合物维数递增规律等。以上结果在 Inorg. Chem., Cryst. Growth & Des., CrystEngComm., Dalton Trans.等著名期刊发表了一系列高水论文,并被国际同行大量引用,多项结果被在综述、进展、专著中做长篇幅介绍。该研究方向对应的无机晶体工程无疑是当今配位化学领域中最具发展前景的方向之一,可以用于有目的的设计有预期结构和有用性能的新材料,在吸附、储能、催化、导电、磁性、光学材料等新功能材料、仿生学研究中有广泛而诱人的应用前景。这些结果为克服目前分子晶体工程所面临的“分子设计”、“定向组装”挑战,提供了具有实践指导意义的基础信息。
6. 发现一些温和或环保型合成微尺度功能固体与纳米材料的新方法。包括:制备了系列棒状、花瓣状、树枝状金属硫化物纳米材料,为半导体材料、通讯材料的研究提供了基础信息;设计合成了一系列对称与不对称三脚架密闭型高效稀土发光配合物,进一步利用构象手性因素,得到自发拆分的手性配合物,为光电分子固体材料、免疫荧光探针等研究提供合成信息等;获得三价稀土高效发光配合物,实现高效率能量传输,分别产生红光Eu(III), 蓝光Ce(III)和绿光Tb(III)的发射。其中三价Ce(III)配合物作为蓝光发光材料具有发光强度高,波长和强度容易调节的特点,是稀土配合物中极少被研究的对象。他们系统研究了Ce(III)配合物的光致和电致发光机理,并初步考察了其作为LED发光材料的性能;利用Borromean配位聚合物生长了单晶微管,提出配合物单晶管的生长机制。以上结果在 Adv. Mater.,Chem. Mater.,J. Phys. Chem. B, Inorg. Chem., Dalton Trans.等著名期刊发表了一系列高水论文,多篇论文得到审稿人高度评价。微纳尺度形貌、大小均一的金属基固体新材料和纳米材料在电、磁、半导体、通讯、航天等诸多方面具有重要科学价值。该课题组在微尺度金属-金属间合功能固体和无机纳米材料构造方面探索新的绿色合成技术,不但为固体新物质的创造提供途径,而且具有积极的社会和经济意义。

苏成勇主要课程

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讲授《结构化学》、《超分子化学与物理》等本科生、研究生课程。指导博士生、硕士生。

苏成勇学术成绩

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1. 1998年以来,主持多项国家自然科学基金、广东省自然科学基金国家重点实验室和开放实验室以及中山大学行动计划人才引进基金等科学基金课题。
2. 在包括美国《J. Am. Chem. Soc.》、《Inorg. Chem.》、《Cryst. Growth & Des.》,德国《Angew. Chem. Int. Ed.》,英国《Chem. Commun.》、《Dalton Trans.》等国内外学术期刊发表论文100多篇,论文被他人引用400多篇次。
3. 2000年获中国化学会“青年化学家”奖,广东省自然科学奖二等奖(第三完成人)。
迄今,苏成勇教授已在国内外学术杂志上正式发表论文150多篇, 绝大部分发表于美国科技信息所权威学术文献索引SCI收录的期刊上,包括化学综合学科国际最高水平的研究性杂志J. Am. Chem. Soc.、Angew. Chem. Int. Ed.和国际一流水平化学及专业杂志Adv. Mater., Chem. Mater., Chem. Commun.、Inorg. Chem.、Dalton Trans.等国际著名期刊,其中高影响因子(Impact Factor > 3)的论文50多篇,充分说明苏成勇教授是一位活跃于国际学科前沿,多产并且科研成果具有国际一流水平的青年学者。同时,他的学术成果已被发表于60多种、包括国际顶级研究型杂志Science, PNAS, Angew. Chem.,JACS 和权威性评述杂志Chem. Rev., Chem. Soc. Rev., Adv. Inorg. Chem.,Coord. Chem. Rev. 在内的学术文章引用或评述1200多次,单篇最高被引用超过100次,论文平均被引次数超过6次/篇,被专著引用30多篇次。曾被著名Eur. Inorg. Chem.等杂志编辑部邀请撰写个人研究成果专题综述论文,论文被美国一流无机化学杂志Inorg. Chem.等选做封面论文,曾多次应邀在国内外学术会议作大会和邀请报告,应邀到德国、美国、新加坡等地做学术交流与报告,并担任国内外多种知名期刊审稿人,兰州大学、山东师范大学等学校的客座教授。这些情况充分说明苏成勇教授在本学科领域的学术地位,表明他在国内外同行中有很强的学术影响力。由于他常年突出的科研成果,曾获得教育部“高等学校科学技术奖自然科学奖一等奖”(07年,第一完成人),广东省“科学技术二等奖”(01年,第三完成人),广东省“优秀博士后”称号,中国化学会“青年化学家”奖,该奖每年仅授予10名在国内取得优异成绩的青年化学家。

苏成勇主要学术论文

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(影响因子Impact Factor高于2的论文,*任通讯联系人论文):
1. Yu Liu, Mei Pan, Qing-Yuan Yang, Lei Fu, Kang Li, Shi-Chao Wei, and Cheng-Yong Su*, Dual-Emission from a Single-Phase Eu–Ag Metal–Organic Framework: An Alternative Way to Get White-Light Phosphor, Chem. Mater., 2012, 24, 1954–1960.
2.Kang Li, Yu Liu, Cheng Yan, Lei Fu, Shi-Chao Wei, Hai-Ping Wang, Mei Pan* and Cheng-Yong Su*, Cocrystallization of coordinative and inorganic lanthanide centers showing dual emission via linked or unlinked antenna, CrystEngComm, 2012, 14, 3868-3874
3. Yu, Zhi-Quan; Pan, Mei*; Jiang, Ji-Jun; Liu, Zhi-Min; Su, Cheng-Yong*, Anion Modulated Structural Diversification in the Assembly of Cd(II) Complexes Based on a Balance-like Dipodal Ligand, Cryst. Growth Des. 2012, 12, 2389-2396.
4.Cheng Yan, Kang Li, Shi-Chao Wei, Hai-Ping Wang, Lei Fu, Mei Pan* and Cheng-Yong Su*, Lanthanide homometallic and d–f heterometallic MOFs from the same tripodal ligand: structural comparison, one photon (OP) vs. two photon (TP) luminescence and selective guest adsorption behavior, J. Mater. Chem., 2012, 22, 9846-9852
5.Qiu-Ping Luo, Xiao-Yun Yu, Bing-Xin Lei, Hong-Yan Chen, Dai-Bin Kuang*, and Cheng-Yong Su*, Reduced Graphene Oxide-Hierarchical ZnO Hollow Sphere Composites with Enhanced Photocurrent and Photocatalytic ActivityQiu-Ping, J. Phys. Chem. C, 2012, 116, 8111–8117.
6.Guo-Bi Li, Jian-Rong He, Mei Pan, Hai-Ying Deng, Jun-Min Liu* and Cheng-Yong Su,* Construction of 0-D to 3-D cadmium complexes from different pyridyl diimide ligands, Dalton Trans., 2012, 41, 4626–4633
7.Guo-Bi Li, Jian-Rong He, Jun-Min Liu* and Cheng-Yong Su*, Anion effect on the structural diversity of three 1D coordination polymers based on a pyridyl diimide ligand, CrystEngComm, 2012, 14, 2152–2158.
8.Jia-Jian Jiang, Cheng Yan, Mei Pan,* Zi Wang, Hai-Ying Deng, Jian-Rong He, Qing-Yuan Yang, Lei Fu, Xian-Fang Xu, and Cheng-Yong Su,* Structural Conformation and Optical and Electrochemical Properties of Imidazolyl-Substituted Naphthalenediimide and Its HgII, CdII, and CuII Halide Complexes, Eur. J. Inorg. Chem. 2012, 1171–1179
9. Li, Shao-Yong; Xu, Yao-Wei; Zeng, She-Quan; Xiao, Li-Min; Duan, Hong-Quan; Lin, Xue-Lian; Liu, Jun-Min*; Su, Cheng-Yong*, Highly selective fluorescent calix[4]arene chemosensor for acidic amino acids in pure aqueous media, Tetrahedron Lett, 2012, 53, 2918-2921
10.Qiong-Yan Yu, Jin-Yun Liao, Shi-Ming Zhou, Yong Shen, Jun-Min Liu,* Dai-Bin Kuang, and Cheng-Yong Su*, Effect of Hydrocarbon Chain Length of Disubstituted Triphenyl-amine-Based Organic Dyes on Dye-Sensitized Solar Cells, J. Phys. Chem. C 2011, 115, 22002–22008
11.Guo-Bi Li, Jun-Min Liu*, Yue-Peng Cai, Cheng-Yong Su,* Structural Diversity of a Series of Mn(Ⅱ), Cd(Ⅱ) and Co(Ⅱ) Complexes with Pyridine Donor Diimide Ligands, Cryst. Growth & Des., 2011, 11, 2763-2772.
12.Qiu-Ping Luo, Bing-Xin Lei, Xiao-Yun Yu, Dai-Bin Kuang* and Cheng-Yong Su*, Hiearchical ZnO rod-in-tube nano-architecture arrays produced via a two-step hydrothermal and ultrasonication process, J. Mater. Chem., 2011, 21, 8709
13. Yu Liu, Mei Pan,* Kang Li, Cheng Yan, Yong Shen, Cun-Yuan Zhao, Wei Wang, and Cheng-Yong Su*, Metal-Directed Assembly of Hexameric Ring, Dimeric Ring and 1D Chain from a Branched Tripodal Ligand, Cryst. Growth Des. 2011, 11, 4876–4884
14. Yu Liu, Kang Li, Shi-Chao Wei, Mei Pan* and Cheng-Yong Su*, Structural tuning of meso-hexamer, chiral-trimer and chiral-chain by anion directed supramolecular interactions, CrystEngComm, 2011, 13 (14), 4564 - 4571
15.Mei Pan*, Xiao-Ming Lin, Guo-Bi Li, and Cheng-Yong Su*, Progress in the study of metal-organic materials applying naphthalene diimides (NDIs) ligands, Coord. Chem. Rev., 2011, 255, 1921–1936. (Review)
16.Xiaobing Wang, Jing Huang, Shenglin Xiang, Yu Liu, Jianyong Zhang,* Andreas Eichhöfer, Dieter Fenske, Shi Bai and Cheng-Yong Su,* Discrete Ag6L6 coordination nanotubular structures based on a T-shaped pyridyl diphosphine, Chem. Commun., 2011, 47, 3849–3851..
17.Kumar Biradha,* Cheng-Yong Su*, and Jagadese J. Vittal*, Recent Developments in Crystal Engineering, Cryst. Growth & Des., 2011, 11, 875-886. (Invited Perspective)
18.Qing-Yuan Yang, Kang Li, Jian Luo, Mei Pan and Cheng-Yong Su,* A simple topological identification method for highly (3,12)-connected 3D MOFs showing anion exchange and luminescent properties, Chem. Commun., 2011, 47 (14), 4234 - 4236.
19.Sujuan Wang, Lei Li, Jianyong Zhang,* Xiaochen Yuan and Cheng-Yong Su*, Anion-tuned sorption and catalytic property of a soft metal-organic solid with polycatenated frameworks, J. Mater. Chem., 2011, 21(20), 7098-7104.
20.Qian Zhang, Lisi He, Jun-Min Liu, Wei Wang, Jianyong Zhang* and Cheng-Yong Su*, Pd2L2 metallacycles as molecular containers for small molecules, Dalton Trans., 2010, 39, 11171–11179.
21.Ji-Jun Jiang, Mei Pan, Jun-Min Liu, Wei Wang, and Cheng-Yong Su*, Assembly of Robust and Porous Hydrogen-Bonded Coordination Frameworks: Isomorphism, Polymorphism, and Selective Adsorption, Inorg. Chem. 2010, 49, 10166–10173.
22.Rui Yang, Lei Li, Ying Xiong, Jian-Rong Li, Hong-Cai Zhou, Cheng-Yong Su*, Two Robust Porous Metal–Organic Frameworks Sustained by Distinct Catenation: Selective Gas Sorption and Single-Crystal-to-Single-Crystal Guest Exchange, Chem. Asian. J. 2010, 5, 2358-2368. (Inner Cover)
23.Qian Zhang, Jianyong Zhang, Qiong-Yan Yu, Mei Pan and Cheng-Yong Su,* Ring-Opening Isomerization Based on the 3-Connecting Node: Formation of a 0-D M2L3 Cage, 1-D Loop-and-Chain, and 2-D (6, 3) Network Cryst. Growth & Des., 2010, 10, 4076-4084.
24.J.-J. Jiang, L. Li, M.-H. Lan, M. Pan, A. Eichhöfer, D. Fenske, C.-Y. Su* Thermally Stable Porous Hydrogen-Bonded Coordination Networks Displaying Dual Properties of Robustness and Dynamics upon Guest Uptake, Chem. Eur. J. 2010, 16, 1841-1848.
25.Yong-Ru Liu, Lei Li, Tao Yang, Xing-Wen Yu and Cheng-Yong Su*, Dehydration and rehydration behavior of a trinodal topological 3-D framework of Cd(II) benzimidazole-5,6-dicarboxylate, CrystEngComm, 2009, 11, 2712–2718.
26. Li, Guo-Bi; Liu, Jun-Min; Yu, Zhi-Quan; Wang, Wei; Su, Cheng-Yong;* Assembly of a 1D Coordination Polymer Through in situ Formation of a New Ligand by Double C-C Coupling on CHCl3 under Solvothermal Conditions, Inorg. Chem. 2009, 48(18), 8659–8661.
27.Qi-Ting He, Xiang-Ping Li, Yu Liu, Zhi-Quan Yu, Wei Wang and Cheng-Yong Su*, Copper(I) Cuboctahedral Coordination Cages: Host-Guest Dependent Redox Activity, Angew. Chem. Int. Ed., 2009, 48, 6156-6159.
28.Chun-Feng Zhuang, Jianyong Zhang, Qing Wang, Zhao-Hua Chu, Dieter Fenske, Cheng-Yong Su*, Temperature-Dependent Guest-Driven Single-Crystal-to-Single-Crystal Ligand Exchange in a Two-Fold Interpenetrated CdII Grid Network, Chem. Eur. J. 2009, 15(31), 7578-7585.
29.Sheng-Run Zheng, Qing-Yuan Yang, Rui Yang, Mei Pan*, Rong Cao and Cheng-Yong Su*, Metal-Directed Assembly of Coordination Polymers with a Multifunctional Semirigid Ligand Containing Pyridyl and Benzimidazolyl Donor Groups, Cryst. Growth & Des., 2009, 9 (5), 2341–2353.
30.Ji-Jun Jang, Lei Li, Tao Yang, Dai-Bin Kuang, Wei Wang and Cheng-Yong Su* Self-assembly of 2D Borromean networks through hydrogen-bonding recognition Chem. Commun., 2009, 2387-2389.
31.Hai-Ying Deng, Jian-Rong He, Mei Pan*, Lei Li and Cheng-Yong Su*, Synergistic metal and anion effects on the formation of coordination assemblies from a N,N-bis(3-pyridylmethyl)naphthalene diimide ligand, CrystEngComm, 2009, 11, 909-917.
32.Qing-Yuan Yang, Sheng-Run Zheng, Rui Yang, Mei Pan, Rong Cao and Cheng-Yong Su*, An unusual 3D coordination polymer assembled through parallel interpenetrating and polycatenating of (6,3) nets CrystEngComm, 2009, 11(4), 680-685.
33.Mei Pan, Xiang-Li Zheng, Yu Liu, Wei-Sheng Liu and Cheng-Yong Su*, Structural and photoluminescent studies of lanthanide complexes with tripodal triRNTB (N-substituted tris(benzimidazol-2-ylmethyl)amine): ligand substituent, anionic and secondary ligand effects Dalton Trans., 2009, 2517-2569.
34.Yong-Ru Liu, Lisi He, Jianyong Zhang*, Xiaobing Wang and Cheng-Yong Su*, Evolution of Spherical Assemblies to Fibrous Networked Pd(II) Metallogels from a Pyridine-Based Tripodal Ligand and Their Catalytic Property, Chem. Mater. 2009, 21(3), 557–563.
35.Qing Wang, Jianyong Zhang*, Chun-Feng Zhuang, Yu Tang and Cheng-Yong Su*,Guest Inclusion and Interpenetration Tuning of Cd(II)/Mn(II) Coordination Grid Networks Assembled from a Rigid Linear Diimidazole Schiff Base Ligand Inorg. Chem. 2009, 48(1), 287-295.
36.Yue-Peng Cai,* Qiong-Yan Yu, Zheng-Yuan Zhou, Zuo-Jun Hu, Hua-Cai Fang, Ning Wang, Qing-Guang Zhan, Li Chen and Cheng-Yong Su* Metal-directed assembly of two 2-D 4d-4f coordination polymers based on elliptical triple-decked cylinders hinged by meso-double helical chains CrystEngComm, 2009, 11, 1006-1013. (Cover paper).
37.Ji-Jun Jiang, Sheng-Run Zheng, Yu Liu, Mei Pan, Wei Wang, and Cheng-Yong Su,* Self-assembly of Triple Helical and meso-Helical Cylindrical Arrays Tunable by Bis-Tripodal Coordination Converters Inorg. Chem. 2008, 47, 10692-10699.
38.Ji-Jun Jiang, Yong-Ru Liu, Rui Yang, Mei Pan, Rong Cao and Cheng-Yong Su*, The interplay of coordinative and hydrogen-bonding in directing the [M(4,4’-bpy)2(H2O)2] square-grid networks: formation of 3D porous framework [Cd(4,4’-bpy)2(H2O)2](ClO4)2(4,4’-bpy)(CH3OH)2 CrystEngComm, 2008, 10(9), 1147 - 1153.
39.C.-L. Chen, Z.-Q. Yu, Q. Zhang, M. Pan,* J.-Y. Zhang, C.-Y. Zhao, C.-Y. Su,* Formation of Disilver(I) Metallacycle and 1D Polymeric Chain from the same Mononuclear Building Block: Assembly Mechanism upon Crystallization, Cryst. Growth & Des., 2008, 8(3), 897–905.
40.S.-R. Zheng, Q.-Y. Yang, Y.-R. Liu, J.-Y. Zhang, Y.-X. Tong, C.-Y. Zhao, and C.-Y. Su,* Assembly of CdI2-Type Coordination Networks from Triangular Ligand and Octahedral Metal Center: Topological Analysis and Potential Framework Porosity Chem. Commun., 2008, 356-358.
41.Gao-Ren Li,* Xi-Hong Lu, Wen-Xia Zhao, Cheng-Yong Su,* Ye-Xiang Tong, Controllable Electrochemical Synthesis of Ce4+-Doped ZnO Nanostructures from Nanotubes to Nanorods and Nanocages Cryst. Growth & Des., 2008, 8(4), 1276–1281.
42.A.-M. Qin, X.-S. Zhou, Y.-F. Qiu, Y.-P. Fang,* C.-Y. Su, S,-H. Yang, Periodically Twinned Nanotowers and Nanodendrites of Mercury Selenide Synthesized via a Solution–Liquid–Solid Route, Adv. Mater. 2008, 20, 768–773.
43.X.-P. Li, M. Pan, S.-R. Zheng, Y.-R. Liu, Q.-T. He, B.-S. Kang, C.-Y. Su,* Dimension-Increase via Hydrogen Bonding and Weak Coordination Interactions from Simple Complexes of 2-(Pyridyl)benzimidazole Ligands Cryst. Growth & Des., 2007, 7(12), 2481–2490.
44.X.-L. Zheng, Y. Liu, M. Pan, X.-Q. Lü, J.-Y. Zhang, C.-Y. Zhao, Y.-X. Tong, C.-Y. Su,* Bright Blue-Emitting Ce3+ Complexes with Encapsulating Polybenzimid-azole Tripodal Ligands for Potential Electroluminescent Devices, Angew. Chem. Int. Ed., 2007, 46(39), 7399 –7403.
45.X.-L. Zhang, C.-P. Guo, Q.-Y. Yang, T.-B. Lu, Y.-X. Tong, C.-Y. Su,* Discrete Chiral Single-Crystal Microtubes Assembled with Honeycomb Coordination Networks Showing Structural Diversity and Borromean Topology in One Single Crystal, Chem. Mater. 2007, 19(19), 4630 – 4632.
46.X.-L. Zhang, C.-P. Guo, Q.-Y. Yang, W. Wang, W.-S. Liu, B.-S. Kang, C.-Y. Su,* Formation of two (6, 3) networks showing structural diversity, Borromean topology and conformational chirality in the same crystal, Chem. Commun. 2007, 4242-4244.
47.Z.-M. Liu, Y. Liu, S.-R. Zheng, Z.-Q. Yu, M. Pan, C.-Y. Su,* Assembly of Trigonal and Tetragonal Prismatic Cages from Octahedral Metal Ions and a Flexible Molecular Clip, Inorg. Chem. 2007, 46(15), 5814 -5816. (Cover paper)
48.X.-P. Li, J.-Y. Zhang, M. Pan, S.-R. Zheng, Y. Liu, C.-Y. Su*, Zero to Three Dimensional Increase of Silver(I) Coordination Assemblies Controlled by Deprotonation of 1,3,5-Tri(2-benzimidazolyl)benzene and Aggregation of Multinuclear Building Units, Inorg. Chem. 2007, 46, 4617-4625.
49.C.-L. Chen, J.-Y. Zhang, C.-Y. Su*, Coordination Assemblies of Metallacyclic, Prismatic and Tubular Molecular Architectures Based on the Non-rigid Ligands Eur. J. Inorg. Chem. 2007, (19), 2997-3010. (Invited Microreview).
50.A.-M. Qin, Y.-P. Fang,* P.-F. Tao, J.-Y. Zhang, C.-Y. Su*, Silver Telluride Nanotubes Prepared by the Hydrothermal Method, Inorg. Chem. 2007, 46(18), 7403-7409.
51.X.-Q. Lü, M. Pan, J.-R. He, Y.-P. Cai, B.-S. Kang, C.-Y. Su*, Three-fold parallel interlocking of 2D brick-wall networks showing ladder-like unsymmetrical Borromean links, CrystEngComm, 2006, 8(11), 827 – 829.
52.X.-Q. Lu, Y.-Q. Qiao, J.-R. He, M. Pan, B.-S. Kang, C.-Y. Su,* Triple-Stranded Helical and Plywood-Like Arrays: Two Uncommon Framework Isomers Based on the Common One-Dimensional Chain Structures, Cryst. Growth & Des., 2006, 6(8), 1910-1914.
53.C-L Chen , B-S Kang and C-Y Su*, Recent Advances in Supramolecular Design and Assembly of Silver(i) Coordination Polymers, Aust. J. Chem., 2006, 59(1) 3–18. (Invited review, cover paper of the special issue RESEARCH FRONT: Silver(I) — a Crystal Engineering Renaissance).
54.W.-G. Lu, C.-Y, Su, T.-B. Lu*, L. Jiang, J.-M. Chen, Two stable 3D metal-organic frameworks constructed by nanoscale cages via sharing the single-layer walls J. Am. Chem. Soc. 2006, 128(1), 34-35.
55.C.-L. Chen, H.-Y. Tan, Q. Zhang, J.-H. Yao, C.-Y. Su*, Disilver(I) Rectangle-shaped Metallacycles: X-Ray Crystal Structure and Dynamic Behavior in Solution Inorg. Chem. 2005, 44(23), 8510-8520.
56.J.-J. Jiang, X.-P. Li, X.-L. Zhang, B.-S. Kang, C.-Y. Su* A new Ag(I)–4,4’-bipyridine coordination polymer of honeycomb (6,3) networks containing a Ag6(4,4’-bipy)6 hexagonal ring of 17  26 Å dimensions CrystEngComm, 2005, 7, 603-607.
57.Lü, X.-Q.; Jiang, J.-J.; Chen, C.-L.; Kang, B.-S.; Su, C.-Y.* 3D Coordination Polymers with Nitrilotriacetic and 4,4'-Bipyridyl Mixed Ligands: Structural Variation Based on Dinuclear or Tetranuclear Subunits Assisted by Na-O and/or O-H···O Interactions Inorg. Chem. 2005, 44(13), 4515-452.
58.Lü, X.-Q.; Jiang, J.-J.; zur Loye, H.-C.;* Kang, B.-S.; Su, C.-Y.* A Non-interpenetrated 1D Molecular Ladder and 2D Butterfly Network: Effect of Positional Isomerism of Semirigid Bis-pyridylmethylpyromellitic Diimide Ligands on the Architecture of Their Metal(II) Complexes Inorg. Chem. 2005, 44(6), 1810-1817.
59.Qin, A.-M.; Fang, Y.-P.;, Ou, H.-D.; Liu, H.-Q.; Su, C.-Y.* Formation of Various Morphologies of Covellite Copper Sulfide Submicron Crystals by Hydrothermal Method without Surfactant Cryst. Growth & Des. 2005, 5(3), 855-860.
60.C.-L. Chen, A. M. Goforth, M. D. Smith, C.-Y. Su, H.-C. zur Loye* Co2(ppca)2(H2O)(V4O12)0.5]: A Framework Material Exhibiting Reversible Shrinkage and Expansion through a Single-Crystal-to-Single-Crystal Transformation Involving a Change in the Cobalt Coordination Environmen Angew. Chem. Int. Ed., 2005, 44, 6673-6677.
61. Su, C.-Y.; Goforth, A. M.; Smith, M. D.; Pellechia, P. J.; zur Loye, H.-C.* Exceptionally Stable, Hollow Tubular Metal-Organic Architectures: Synthesis, Characterization, and Solid-State Transformation Study J. Am. Chem. Soc. 2004, 126(11), 3576-3586.
62. Su, C.-Y.; Goforth, A. M.; Smith, M. D.; zur Loye. H.-C.* Assembly of large simple 1D and rare polycatenated 3D molecular ladders from T-shaped building blocks containing a new, long N,N -bidentate ligand, Chem. Commun. 2004, (19), 2158-2159.
63. Su, C.-Y.;, Smith, M. D.; Goforth, A. M.; zur Loye, H.-C.* A Three-Dimensional, Noninterpenetrating Metal-Organic Framework with the Moganite Topology: A Simple (42.62.82)(4.64.8)2 Net Containing Two Kinds of Topologically Nonequivalent Points, Inorg. Chem. 2004, 43, 6881-6883.
64. Su, C.-Y.;* Cai, Y.-P.; Chen, C.-L.; Smith, M. D.; Kaim, W.;* zur Loye, H.-C.* Ligand-directed Molecular Architectures: Self-assembly of Two-dimensional Rectangular Metallocycles and Three-dimensional Trigonal or Tetragonal Prisms. J. Am. Chem. Soc. 2003, 125(28), 8595-8613.
65. Su, C.-Y.; Smith, M. D.; zur Loye, H.-C.* Columnar Supramolecular Architecture Self-Assembled from S4-Symmetric Coordination Nanotubes Encapsulating Neutral Guest Molecules. Angew. Chem. Int. Ed. 2003, 42(34), 4085-4089.
66. Li, Y.-H.; Su, C.-Y.; Goforth, A. M.; Shimizu, K. D.; Gray, K. D.; Smith, M. D.; zur Loye, H.-C.* The first ‘two-over/two-under’ (2O/2U) 2D weave structure assembled from Hg-containing 1D coordination polymer chains Chem. Commun. 2003, 1630-1631.
67. Su, C.-Y.; Goforth, A. M.; Smith, M. D.; zur Loye, H.-C.* Formation of Dinuclear, Macrocyclic and Chain Structures from HgI2 and a Semirigid Benzimidazole-based Bridging Ligand: An Example of Ring-Opening Supramolecular Isomerism Inorg. Chem. 2003, 42(18), 5685-5692.
68.Chen, C.-L.; Su, C.-Y.;* Cai, Y.-P.; Zhang, H.-X.; Xu, A.-W.; Kang, B.-S.;* zur Loye, H.-C.* Multidimensional Frameworks Assembled from Silver(I) Coordination Polymers Containing Flexible Bis(thioquinolyl) Ligands: Role of the Intra- and Intermolecular Aromatic Stacking Interactions. Inorg. Chem. 2003, 42(12), 3738-3750.
69.Chen, C.-L.; Su, C.-Y.;* Cai, Y.-P.; Zhang, H.-X.; Xu, A.-W.; Kang, B.-S.* A noninterpenetrating 2D coordination polymer from spacer (CH2)8 based highly flexible linear ligand and AgCF3CO2. New J. Chem. 2003, 27, 790-792.
70.Cai, Y.-P.; Su, C.-Y.;* Chen, C.-L.; Li, Y.-M.; Kang, B.-S.; Chan, A. S. C.; Kaim, W.* Formation of Racemate and Mesocate Complexes From an Achiral Tripodal Ligand Containing Three Benzimidazole Groups. Inorg. Chem. 2003, 42(1), 163-168.
71. Su, C.-Y.; Liao, S.; Wanner, M. Fiedler, J. Zhang, C.; Kang, B.-S.;* Kaim, W.* The copper(I)/copper(II) transition in complexes with 8-alkylthioquinoline based multidentate ligands. Dalton Trans. 2003, (2), 189-202.
72.Hoshino, Y.;* Higuchi, S.; Fiedler, J.; Su, C.-Y.; Knödler, A.; Schwederski, B.; Sarkar, B.; Hartmann, H.; Kaim, W.* Long-Range Electronic Coupling in Various Oxidation States of a C4-Linked Tris(-diketonato)ruthenium Dimer Angew. Chem. Int. Ed. 2003, 42(6), 674-677.
73.Yang, X.-P.; Kang, B.-S.;* Wong, W.-K.;* Su, C.-Y.; Liu, H.-Q. Synthesis, Crystal Structures, and Luminescent Properties of Lanthanide Complexes with Tripodal Ligands Bearing Benzimidazole and Pyridine Group. Inorg. Chem. 2003, 42(1), 169-179.
74. Su, C.-Y.; Cai, Y.-P.; Chen, C.-L; Lissner, F.; Kang, B.-S.;* Kaim, W.* Self-Assembly of Trigonal-Prismatic Metallocages Encapsulating BF4- or CuI32- as Anionic Guests: Structures and Mechanism of Formation Angew. Chem. Int. Ed. 2002, 41(18), 3371-3375.
75. Su, C.-Y.; Yang, X.-P.; Kang, B.-S.* and Mak, T. C. W.* An unusual Th symmetric nanoporous network based on hexameric metallamacrocycles with disparate cavities for guest inclusions. Angew. Chem. Int. Ed. 2001, 40(9), 1725-1728; Angew. Chem. 2001, 113(9), 1775-1778.
76. Su, C.-Y.;* Cai, Y.-P.; Chen, C.-L. and Kang, B.-S.* An unusual non-interpenetrating (3,6) topological network assembled by semi-rigid benzimidazole-based bridging ligand. Inorg. Chem. 2001, 40(10), 2210-2211.
77. Su, C.-Y.;* Cai, Y.-P.; Chen, C.-L.; Zhang, H.-X. and Kang, B.-S.* Coordination-directed assembly of trigonal and tetragonal molecular boxes encapsulating anionic guests. J. Chem. Soc., Dalton Trans. 2001, (4), 359-361.
78.Cai, Y.-P.; Zhang, H.-X.; Xu, A.-W.; Su, C.-Y.;* Chen, C.-L.; Liu, H.-Q.; Zhang, L; Kang, B.-S.* Self-assembly of silver(I) polymers with single strand double-helical structures containing the ligand O,O'-bis(8-quinolyl)-1,8-dioxaoctane, J. Chem. Soc., Dalton Trans. 2001, (16), 2429 – 2434.
79.Xu, A.-W.; Su, C.-Y.;* Zhang, Z.-F.; Cai, Y.-P. and Chen, C.-L. Organic-inorganic hybrid networks assembled by silver(I) 3,5-dinitrobenzoate with 2-methylimidazole or 2-aminopyrimidine. New J. Chem. 2001, 25(3), 479-482.
80. Su, C.-Y.; Kang, B.-S.; Du, C.-X.; Yang, Q.-C. and Mak, T. C. W.* Formation of mono-, bis-, tris-, and tetranuclear Ag(I) complexes of C3-symmetric tripodal benzimidazole ligands. Inorg. Chem. 2000, 39(21), 4843-4849.
81. Su, C.-Y.,* Liao, S., Zhu, H.-L, Kang, B.-S., Chen, X.-M. and Liu, H.-Q. Silver(I) complexes of quinoline based linear multidentate ligands: Self-assembly of sulfur-bridged tetrametallotricyclic boxes. J. Chem. Soc., Dalton Trans. 2000, (13), 1985-1993.
82. Su, C.-Y., Kang, B.-S., Wang, Q.-G. and Mak, T. C. W.* A novel (CF3SO3-)6 cluster with multiple F···F interactions: crystal structure of a self-assembled trinuclear Ag(I) complex with the tripodal ligand tris(2-benzimidazolylmethyl)amine. J. Chem. Soc., Dalton Trans. 2000, (12), 1831-1833.
83. Su, C.-Y., Kang, B.-S., Yang, Q.-C. and Mak, T. C. W.* Doubly interpenetrating stereoisomeric three-dimensional networks of tripodal neodymium(III) complexes from potentially spacer-controlled enantioselective self-assembly. J. Chem. Soc., Dalton Trans. 2000, (12), 1857-1862.
84.Yang, X.-P., Su, C.-Y.,* Kang, B.-S.,* Feng, X.-L., Xiao, W.-L. and Liu, H.-Q. Studies on lanthainde complexes of the tripodal ligand N,N-bis(2-benzimidazolylmethyl)-N-(2-pyridylmethyl)amine. Crystal structures and luminescent properties. J. Chem. Soc., Dalton Trans. 2000, (19), 3253-3260.
85. Su, C.-Y., Kang, B.-S.,* Liu, H.-Q., Wang, Q.-G., Chen, Z.-N., Lu, Z.-L., Tong, Y.-X. and Mak, T. C. W.* Luminescent lanthanide complexes with encapsulating polybenzimidazole tripodal ligands. Inorg. Chem. 1999, 38(7), 1374-1375.
86. Su, C.-Y., Kang, B.-S., Liu, H.-Q., Wang, Q.-G. and Mak, T. C.W.* Construction of two- and three-dimensional supramolecular networks with an encapsulated lanthanide(III) complex as building block and hydrogen-bonded 4,4’-bipyridyl as spacer. Chem. Commun. 1998, 15, 1551-1552.
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