欢迎光临 辽宁石油化工大学石油化工学院!
周坤
教授
联系电话:
13842382776
Email:
zhouk800@aliyun.com
zhoukun@lnpu.edu.cn
一、个人基本情况
周坤,女,1987年3月生,教授,博士,硕士生导师,现任石油化工学院化学系教师。
二、学习、工作经历
1.学习经历
2015.12-2021.12 东北师范大学 环境科学与工程(专业) 博士后
2010.09-2015.06 东北师范大学 物理化学(专业) 博士
2006.09-2010.07 渤海大学 化学师范(专业) 学士
2.工作经历
2024.12-今 辽宁石油化工大学 石油化工学院 教授
2015.07-2024.12 辽宁石油化工大学 石油化工学院 副教授
三、学术兼职
CNKI评审专家;
Coordination Chemistry Reviews和Nanoscale等国际知名期刊的审稿人。
四、研究方向
晶态材料;高核金属簇合物化学;金属氧簇化学;有机-无机杂化材料;功能材料化学。
五、研究生招生专业
无机化学;分析化学;物理化学;有机化学。
六、主要业绩
1、科研服务方面:
2018年入选辽宁省“百千万人才工程”万人层次;获辽宁石油化工大学2019-2022年度学术论文先进个人称号。主要从事过渡金属配合物的合成和性质研究。从事科研工作以来,以第一作者或通讯作者身份在国内外重要学术刊物上公开发表学术论文30篇,其中SCI收录21篇,高被引论文1篇;会议论文6篇;公开申请发明专利11项,授权8项;主持省级科研项目4项,国家项目1项,参与多项省部级及国家级项目。
2、教学管理方面:
2018年指导的硕士毕业生荣获辽宁省普通高等学校优秀毕业生称号;2020年荣获辽宁省优秀硕士学位论文指导教师称号;2023年荣获辽宁石油化工大学优秀硕士学位论文指导教师称号。主讲本科生课程两门,研究生课程两门,参与省级一流课程项目2项,校级改革项目1项。
七、科研项目
1、辽宁省教育厅基本科研项目-面上项目,2023.11-2026.11,辽宁省教育厅,主持。
2、辽宁省教育厅基本科研项目-青年项目,2020.09-2022.09,辽宁省教育厅,主持。
3、国家自然科学基金-重大研究计划,2020.01-2022.12,国家自然科学基金,参与。
4、辽宁省教育厅基本科研项目-一般项目,2017.08-2020.07,辽宁省教育厅,主持。
5、辽宁省科技厅博士启动基金项目,2017.09-2019.08,辽宁省科技厅,主持。
6、第61批中国博士后科学基金面上资助项目,2017.04-2021.12,中国博士后科学基金委员会,主持。
7、辽宁石油化工大学人才引进基金项目(第六层次),2015.07-2021.05,辽宁石油化工大学,主持。
八、发表论文情况
[1] Thiacalix[4]arene-protected alkynyl Agn (n = 9, 18) nanoclusters: syntheses, structural characterizations, photocurrent responses and fluorescence properties, Dalton Transactions, 2023, 52, 13405–13412.
[2] Synthesis, crystal structure, characterization, effective photocurrent response and photodegradation of a silver(I) diphosphine 3D supramolecular structure, Journal of Organometallic Chemistry, 2023, 1001, 122879.
[3] Carboxylate Ligand-supported Agn (n=21 and 24) Alkynyl Clusters Induced by Single/Double Carbonate Ions, Chemistry-An Asian Journal, 2023, 18, e202300041.
[4] Diphosphine modified copper(I)-thiacalixarene supramolecular structure for effective photocurrent response and photodegradation of methylene blue, Polyhedron, 2022, 222, 115934.
[5] Trapping a [W10O32]6- decatungstate anion in an Ag44 nanowheel, Chemistry-An Asian Journal, 2022, 17, e202200072.
[6] The interesting luminescence behavior and rare nonlinear optical properties of the {Ag55Mo6} nanocluster, RSC Advances, 2021, 11, 38814–38819.
[7] Synthesis, crystal structure and photocurrent response property of a copper(II)-organic supramolecular coordination compound based on [Cu4(phen)4(OH)4(H2O)2]4+ cations and [Cu(EDTA)]2− anions, Inorganica Chimica Acta, 2021, 525, 120462.
[8] Trinuclear cationic silver nanoclusters based-on bis-(phosphine) ligands and stabilized by CF3SO3− anions, New Journal of Chemistry, 2021, 45, 7555–7563.
[9] A One-dimensional Infinite Silver Alkynyl Assembly [Ag8(C≡CtBu)5(CF3COO)3(CH3CN)]n: Synthesis, Crystal Structure and Properties, RSC Advances, 2020, 10, 16045–16049.
[10] A stably discrete 31-nuclearity silver(i) thiolate nanocluster luminescent thermometer supported by DMF auxiliary ligands, New Journal of Chemistry, 2020, 44, 663–667.
[11] A Temperature-Sensitive Luminescent Ag42 Nanocluster Supported by TertButyl Thiol Ligands, Chemistry-An Asian Journal, 2019, 14, 3279–3282.
[12] A {Ag17S8} cluster-based coordination polymer linked by bridging CO32− ligands, Inorganica Chimica Acta, 2019, 497, 119107.
[13] An inorganic–organic hybrid constructed from Keggin polyoxoanions and benzotriazole ligands modulated by two dinuclear silver(I) clusters, Polyhedron, 2017, 138, 232–238.
[14] Rational synthesis, structural characterization and theoretical exploration on third-order nonlinear optical properties of isolated Agn (n = 5, 8, 12) alkynyl clusters, Dyes and Pigments, 2015, 113, 299–306.
[15] Ag(I)-mediated formation of a 2D cyano-bridged multinuclear silver(I) alkynyl network coupled with the C–C bond cleavage of acetonitrile, CrystEngComm, 2014, 16, 10376–10379.
[16] Facile assembly of 1D multinuclear Agn (n = 11, 11, 12) alkynyl chains with CF3COO−/CH3COO− as the auxiliary ligand, RSC Advances, 2014, 4, 60451–60459.
[17] An ultrastable {Ag55Mo6} nanocluster with a Ag-centered multishell structure, Chemical Communications, 2014, 50, 11934–11937.
[18] Unexpected 1D self-assembly of carbonate-templated sandwich-like macrocycle-based Ag20S10 luminescent nanoclusters, CrystEngComm, 2014, 16, 7860–7864.
[19] Self-assembly of an all-thiol-stabilized {Ag28S23} high-nuclearity luminescent nanocluster with a “crab-like” shape, Dalton Transactions, 2014, 43, 10695–10699.
[20] Serendipitous anion-templated self-assembly of a sandwich-like Ag20S10 macrocycle-based high-nuclearity luminescent nanocluster, Dalton Transactions, 2013, 42, 1352–1355.
[21] Assembly of a luminescent core–shell nanocluster featuring a Ag34S26 shell and a W6O216− polyoxoanion core, Chemical Communications, 2012, 48, 5844–5846.
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