职  称:教授
研究方向:功能材料化学
办公电话:85099544
办公地点:逸夫科技馆322房间

个人简历

朱东霞(博士),教授,博士生导师, 2011年作为国家留学基金委青年骨干教师公派项目的访问学者在英国杜伦大学化学系Todd. B. Marder教授课题组访问学习,与在材料化学研究领域建树颇丰的Martin. R. Bryce建立了良好的合作关系。多年来一直致力于高性能的过渡金属配合物材料的设计与合成,获得系列高选择性,高灵敏度的荧光及磷光探针,并将其应用于光动力治疗癌症,生物成像以及生物细胞中的离子检测等。近几年朱东霞在Chem. Soc. Rev., Adv. Sci., Adv. Funct. Marter., Chem. Sci., Anal. Chem., Macromolecules, Chem. Commun. 等国内外核心学术期刊发表SCI研究论文40余篇,获得国家发明专利授权7项。主持国家自然科学基金基金2项、吉林省科技发展计划重点项目2项,吉林省人力资源厅回国人员优秀启动类项目1项,吉林省环保局项目及东北师大自然科学青年基金各1项;参加国家自然科学基金面上项目、吉林省科技厅项目多项。 大学开始受教育经历 2001年—2005年 东北师范大学 化学学院 博 士 1995年—1998年 东北师范大学 化学学院 硕 士 1991年—1995年 东北师范大学 化学学院 学 士 研究工作经历 2017年- 至今 东北师范大学 化学学院 教授 2006年—2017 东北师范大学 化学学院 副教授 2001年—2006年 东北师范大学 化学学院 讲师 1998年—2001年 东北师范大学 化学学院 助教 2010年—2012年 英国杜伦大学 化学学院 访问学者 2013年6月—2013年8月 英国杜伦大学 化学学院 访问学者 2014年6月—2014年8月 英国杜伦大学 化学学院 访问学者 2015年6月—2015年8月 英国杜伦大学 化学学院 访问学者 代表性论文: [1]. G. F. Li, D. X. Zhu*, X. L. Wang, Z. M. Su * and M. R. Bryce * Dinuclear metal complexes: multifunctional properties and applications, Chem. Soc. Rev., 2019, DOI: 10.1039/c8cs00660a [2]. L. P. Zhang, W. L. Che, Z. Y. Yang, X. M. Liu, S. Liu, Z. G. Xie*, D. X. Zhu*, Zhongmin Su, B. Z. Tang * and M. R. Bryce *, Bright red aggregation-induced emission nanoparticles for multifunctional applications in cancer therapy, Chem. Sci., 2019, DOI: 10.1039/c9sc06310b [3]. L. P. Zhang, Y. Y. Li, W. L. Che, D. X. Zhu,* G. F. Li, Z. G. Xie,* N. Song, S. Liu, B. Z. Tang,* X. M. Liu, Z. M. Su,* and M. R. Bryce* AIE Multinuclear Ir(III) Complexes for Biocompatible Organic Nanoparticles with Highly Enhanced Photodynamic Performance, Adv. Sci., 2019, 6, 1802050-1802056. [4]. W. L. Che, L. P. Zhang, Y. Y. Li, D. X. Zhu,* Z. G. Xie*, G. F. Li, P. F. Zhang, Z. M. Su*, C. D. Dou, and B. Z. Tang*, Ultrafast and Noninvasive Long-Term Bioimaging with Highly Stable Red Aggregation-Induced Emission Nanoparticles, Anal. Chem., 2019, 91, 3467−3474 [5]. Y. F. Yue, D. X. Zhu,* N. Zhang,*, G. S. Zhu, and Z. M. Su Ligand-Induced Tunable Dual-Color Emission Based on Lead Halide Perovskites for White Light-Emitting Diodes, ACS Appl. Mater. Interfaces, 2019, 11, 15898−15904. [6]. D. Li, G. F. Li, W. L. Che, D. X. Zhu* and Z. M. Su* A remarkable phosphorescent sensor for acid–base vapours based on an AIPE-active Ir(III) complex, Dalton Trans., 2019, 48, 1955-1959. [7]. Y. Wang, X. Y. Zhao, Y. N. Zhao, T. Z. Yang, X. M. Liu, J. X. Xie, G. F. Li, D. X. Zhu,* H. Q. Tan*, Z. M. Su* Photosensitizers based on Ir(III) complexes for highly efficient photocatalytic hydrogen generation, Dyes and Pigments, 2019, 170, 107547-107553. [8]. D. Li, G. F. Li, J. X. Xie, D. X. Zhu*, Z. M. Su*and M. R. Bryce* Strategic modification of ligands for remarkable piezochromic luminescence(PCL) based on a neutral Ir(III) phosphor, J. Mater. Chem. C, 2019, 7, 10876-10880. [9]. J. X. Xie, D. Li, Y. C. Duan, Y. G, T. Z. Yang, D. X. Zhu*, Z. M. Su* Cationic dinuclear Ir(III) complexs based on acylhydrazine ligands: Reversible piezochromic luminescence and AIE behaviours, Dyes and Pigments,172 (2020) 107855. [10]. T. Z. Yang, Y. Wang, X. M. Liu, G. F. Li, W. L. Che, D. X. Zhu*, Z. M. Su* and M. R. Bryce * Reversible tricolour luminescence switching based on a piezochromic iridium(III) complex, Chem. Commun., 2019, 55, 14582-14585. [11]. J. Y. Chen, X. J. Chen, D. Y. Ma, G. F. Li, J. Zhao*, D. X. Zhu*, Z. G. Chi * Inorganic perovskite engineering through incorporation of a carboxylic acid containing ligand for performance enhancement in perovskite light-emitting diodes, J. Mater. Chem. C, 2019,7, 14141-14147. [12]. Y. Wang, T. Z. Yang, X. M. Liu, G. F. Li, W. L. Che, D. X. Zhu* and Z. M. Su* New cationic Ir(III) complexes without ‘‘any soft substituents’’: aggregation-induced emission and piezochromic luminescence, J. Mater. Chem. C, 2018, 6, 12217-12223. [13]. N. Jiang, G. F. Li, B. H. Zhang, D. X. Zhu,* Z. M. Su,* M. R. Bryce*, Aggregation-InducedLong-Lived Phosphorescence in Nonconjugated Polyurethane Derivatives at 77 K, Macromolecules, 2018, 51, 4178-4184. [14]. W. L. Che, G. F. Li, X. M. Liu, K. Z. Shao, D. X. Zhu,* Z. M. Su,* M. R. Bryce,* Selective sensing of 2, 4, 6-trinitrophenol (TNP) in aqueous media with “aggregation-induced emission enhancement” (AIEE)-active iridium (III) Complexes, Chem. Commun., 2018, 54, 1730-1733. [15]. D. G. Congrave, A. S. Batsanov, M. X. Du, Y. Liu,* D. X. Zhu,* M. R. Bryce,* Intramolecular π-π Interactions with a Chiral Auxiliary Ligand Control Diastereoselectivity in a Cyclometalated Ir (III) Complex, Inorg. Chem. 2018, 57, 12836-12849. [16]. G. M. Li, D. X. Zhu, T. Peng, Y. Liu,* Y. Wang,* and M. R. Bryce* Very High Efficiency Orange-Red Light-Emitting Devices with Low Roll-Off at High uminance Based on an Ideal Host-Guest System Consisting of Two Novel Phosphorescent Iridium Complexes with Bipolar Transport Adv. Funct. Mater. 2014,24, 7420–7426(共同第一作者) [17]. G. F. Li, Y. Wu , G. G. Shan, W. L. Che, D. X. Zhu,* B. Q. Song, L. K. Yan,* Z. M. Su, M. R. Bryce* New ionic dinuclear Ir(Ⅲ) Schiff base complexes with aggregation–induced phosphorescent emission (AIPE) Chem. Commun., 2014, 50, 6977-6980 [18]. W. L. Che, G. F. Li, J. X. Zhang, Y. Geng, Z. G. Xie, D. X. Zhu,* Z. M. Su,* Exploiting aggregation induced emission and twisted intramolecular charge transfer in a BODIPY dye for selective sensing of fluoride in aqueous medium and living cells, J. Photochem. Photobio. A: Chemistry, 2018, 358, 274-283. [19]. G. F. Li, D. G. Congrave, D. X. Zhu,* Z. M. Su,* M. R. Bryce*, Recent advances in luminescent dinuclear iridium(III) complexes and their application in organic electroluminescent devices, Polyhedron, 2018, 140, 146-157. [20]. X. Y. Ma, J. Liang, F. Q. Bai, K. Q. Ye,* J. N. Xu, D. X. Zhu,* M. R. Bryce*, New Mixed-C^N Ligand Tris-Cyclometalated IrIII Complexes for Highly-Efficient Green Organic Light-Emitting Diodes with Low Efficiency Roll-Off, Eur. J. Inorg. Chem., 2018, 4614-4621. [21]. Y. Jiang, G. F. Li, W. L. Che, Y. J. Liu, B. Xu, G.G. Shan, D. X. Zhu,* Z. M. Su,* M. R. Bryce*, A neutral dinuclear Ir( III ) complex for anti-counterfeiting and data encryption, Chem. Commun., 2017, 53, 3022-3055. [22]. Y. Jiang, G. F. Li, D. X. Zhu,* Z. M. Su,* M. R. Bryce,* An AIE-active phosphorescent Ir(III) complex with piezochromic luminescence (PCL) and its application for monitoring volatile organic compounds (VOCs), J. Mater. Chem. C, 2017, 5, 12189-12193. [23]. G. F. Li, R. S. Nobuyasu, B. H. Zhang, Y. Geng, B. Yao, Z. Y. Xie, D. X. Zhu,* G. G. Shan, W. L. Che, L. K. Yan, Z. M. Su, F. B. Dias,* and M. R. Bryce,* Thermally Activated Delayed Fluorescence in CuI Complexes Originating from Restricted Molecular Vibrations, Chem. Eur. J., 2017, 23, 11761-11766. [24]. H. Benjamin, J. Liang, Y. Liu,* Y. Geng, X. M. Liu, D. X. Zhu,* A. S. Batsanov, M. R Bryce,* Color Tuning of Efficient Electroluminescence in the Blue and Green Regions Using Heteroleptic Iridium Complexes with Phenoxyoxazole Ancillary Ligands, Organometallics, 2017, 36, 1810-1821. [25]. M. X. Du, Y. S. Feng, D. X. Zhu, T. Peng, Y. Liu,* Y. Wang,*and M. R. Bryce,* Novel Emitting System Based on a Multifunctional Bipolar Phosphor: An Effective Approach for Highly Efficient Warm-White Light-Emitting Devices with High Color-Rendering Index at High Luminance, Adv. Mater., 2016, 28, 5963-5968. [26]. M. H. Qin, D. Jin, W. L. Che, Y. Jiang, L. P. Zhang, D. X. Zhu,* Z. M. Su,* Fluorescence response and detection of Cu2+ with 2-(2-hydroxyphenyl) benzimidazole in aqueous medium, Inorg. Chem. Commun., 2017, 75, 25-28. [27]. W. L. Che, T. C. Yu, D. Jin, X. Y. Ren, D. X. Zhu,* Z. M. Su* and M. R. Bryce,* A simple oxazoline as fluorescent sensor for Zn2+ in aqueous media, Inorg. Chem. Commun., 2016, 69, 89-93. [28]. G. F. Li, W. Guan, S. Du, D. X. Zhu,* G. G. Shan, X. J. Zhu, L. K. Yan, Z. M. Su, M. R. Bryce and A. P. Monkman, Anion-specific aggregation induced phosphorescence emission (AIPE) in an ionic iridium complex in aqueous media, Chem. Commun., 2015, 51, 16924-16927. [29]. G. F. Li, X.Y. Ren, G. G. Shan, W. L. Che, D. X. Zhu,* L. K. Yan, Z. M. Su* and M. R. Bryce* New AIE-active dinuclear Ir (III) complexes with reversible piezochromic phosphorescence behavior, Chem. Commun., 2015, 51, 13036-13039. [30]. P. Li, G. G. Shan, H. T. Cao, D. X. Zhu,* Z. M. Su,* R. Jitchatic, M. R. Bryce* Intramolecular Pi–Stacking in Cationic Iridium (III) Complexes with Phenyl-Functionalized Cyclometalated Ligands: Synthesis, Structure, Photophsical Properties and Theoretical studies [31]. J. Zhang, L. Zhou, H. A. Al-Attar, K. Z. Shao, L. Wang, D. X. Zhu,* Z. M. Su,* M. R. Bryce* Efficient Light-Emitting Electrochemical Cells (LECs) Based on Ionic Iridium(III) complexes with 1,3,4-Oxadiazole Ligands Adv. Funct. Mater. 2013, 23, 4667-4677 [32]. K. Chao, K. Z. Shao, T. Peng, D. X. Zhu,* Y. Wang, Y. Liu,* Z. M. Su,* M. R. Bryce* New oxazoline- and thiazoline-containing heteroleptic iridium(III) complexes for Highly-efficient phosphorescent organic light-emitting devices (PhOLEDs): colour tuning By varying the electroluminescence bandwidth J. Mater. Chem. C, 2013, 1, 6800-6806 [33]. G. G. Shan, H. B. Li, H. Z. Sun, H. T. Cao, D. X. Zhu,* Z. M. Su,* Enhancing the luminescence properties and stability of cationic iridium(III) complexes based on phenylbenzoimidazole ligand: a combined experimental and theoretical study Dalton Trans., 2013, 42, 11056–11065 [34]. G. G. Shan, D. X. Zhu, H. B. Li, P. Li, Z. M. Su and Y. Liao Creation of cationic iridium(III) complexes with aggregation-induced hosphorescent emission (AIPE) properties by increasing rotation groups on carbazole peripheries Dalton Trans., 2011, 40, 2947-2953 [35]. G. G. Shan, L. Y. Zhang, H. B. Li, S. Wang, D. X. Zhu, P. Li, C. G. Wang, Z. M. Su, Y. Liao A cationic iridium(III) complex showing aggregation-induced phosphorescent emission (AIPE) in the solid state: synthesis, characterization and properties Dalton Trans., 2012, 41, 523-530. [36]. G. G. Shan, H. B. Li, H. T. Cao, D. X. Zhu, P. Li, Z. M. Su and Y. Liao, Reversible piezochromic behavior of two new cationic iridium(III) complexes Chem. Commun., 2012, 48, 2000-2002. [37]. G. G. Shan, H. B. Li, Z. C. Mu, D. X. Zhu, Z. M. Su and Y. Liao, Synthesis of cationic iridium(III) complexes with high quantum yield via enhancing the steric hindrance of ligands J. Organomet. Chem., 2012, 702, 27-35. [38]. X. L. Wang, C. Qin, S. X. Wu, K. Z. Shao, Y. Q. Lan, S. Wang, D. X. Zhu, Z. M. Su, E. B. Wang Bottom-Up Synthesis of Porous Coordination Frameworks: Apical Substitution of a Pentanuclear Tetrahedral Precursor Angewandte Chemie-International Edition., 2009, 48, 5291-5295,. [39]. J. Ying, B. Li, D. X. Zhu, A. X. Tian Preparation and Photoluminescence Properties of Bidentate Ligand Containing Electro-transporting Group and Its Europium(III) Complex Eu(DBM)(3)(DPOP), Chinese Journal Of Inorganic Chemistry., 2009, 25 1474-1477. [40]. L. F. Shi, B. Li, S. Z. Lu, D. X. Zhu, W. L. Li Synthesis, characterization and oxygen-sensing properties of a novel luminescent Cu(I) complex Appl. Organometal. Chem. 2009, 23, 379–384. [41]. Y. Wang, D. X. Zhu, Z. M. Su, K. Z Shao, Y. H. Zhao A novel two-dimensional zinc(II) coordination polymer with 6-mercaptonicotinic acid Acta Crystallographica Section C., 2008, 64, 70-72. [42]. T. Wang, J. Peng, H. S Liu, D.X. Zhu, A. X. Tian Assembly of a new Wells–Dawson polyoxometalate-templated compound based on Fe-btb complex Journal of Molecular Structure., 2008 , 892, 268-271. [43]. L. N. Liu,B. Li, J. Ying, X. D. Wu, H. F. Zhao, X. G. Ren1, D. X. Zhu, Z. M. Su Synthesis and characterization of a new trifunctional magnetic-photoluminescent-oxygen-sensing nanomateria Nanotechnology., 2008, 19, 495709. 发明专利: (1)一种对称1,3,4-噁二唑的合成方法 发明人:朱东霞; 芦红飞; 张 静; 张景萍 发明专利(中国),专利号:200910067476.6(已授权)。 (2)一种离子型铱配合物及合成方法和在发光电化学池中的应用 发明人:朱东霞; 张静; 崔秀君; 芦红飞 发明专利(中国),专利号:200910217827.7(已授权)。 (3)一种双核离子型铱配合物及其用途 发明人:朱东霞;李洸伕; 车伟龙; 单国刚; 李鹏; 刘继红; 苏忠民 申请发明专利(中国),专利号:201410058465.2。 (4)一种简单快速检验锌离子的荧光探针 发明人:朱东霞;车伟龙;许婧婷;梁杰;崔秀君;苏忠民 申请发明专利(中国),专利号:201410502158.9。 (5)有机电致发光器件发光效率测量方法 发明人:杨贵福; 苏忠民; 朱东霞 发明专利(中国),专利号:200610016717.0(已授权)。 (6)固态发光电化学池寿命的测量方法 发明人:杨贵福; 苏忠民; 朱东霞; 李鹏; 晁凯; 庞明利 发明专利(中国),申请专利号:200910217920.8 (7)稀土纳米复合材料的合成及表面修饰方法 发明人:尚庆坤; 朱东霞; 于 辉; 王文兰; 赵娜娜; 解晓青 科研项目: 1、功能化聚氨酯阻燃复合材料研制与应用,吉林省发展和改革委员会,2016-01 - 2018-12,主持,30万。 2、高效率离子型磷光材料的设计合成及其发光器件性能研究,吉林省科技厅工业高新技术(重点),2015-01 - 2017-12,主持,25万。 3、高效率磷光材料的设计合成及其发光器件性能研究,国家自然科学基金面上项目,2015-01 - 2018-12,主持,85万。 4、新型离子型铱配合物设计合成及其固态发光电化学池性能研究,国家自然科学基金青年基金, 2012-01 - 2015-12,主持,25万。

社会兼职

获奖情况 (数据来源:科学技术处、社会科学处)

  • 2017-11-10 吉林省科学技术奖自然科学奖一等奖

教学信息 (数据来源:教务处)

  • 现代仪器分析技术
  • 有机物结构分析实验3
  • 仪器分析化学(含实验)
  • 有机物结构分析实验
  • 有机物结构分析实验2
  • 高等分析化学
  • 食品分析化学
  • 材料化学(I)
  • 21级学硕不含课程
  • 20级学硕
  • 18工程
  • 22级分析学硕
  • 2019级学硕
  • 21级分析
  • 2018学硕
  • 21级分析学硕
  • 化学工程(硕士)
  • 仪器分析实验13
  • 仪器分析实验
  • 化学工程(硕士)
  • 仪器分析实验15
  • 仪器分析实验5
  • 仪器分析实验11
  • 仪器分析实验7
  • 仪器分析实验17
  • 专业实习
  • 毕业论文
  • 仪器分析实验4
  • 仪器分析实验8
  • 仪器分析实验3
  • 仪器分析实验9
  • 仪器分析实验14
  • 仪器分析实验2
  • 仪器分析实验12
  • 仪器分析实验6
  • 仪器分析实验20
  • 仪器分析实验10
  • 仪器分析实验18
  • 仪器分析实验16
  • 仪器分析实验19

科研信息 (数据来源:科学技术处、社会科学处)

  • 项目:
  • 1. 金属基抗肿瘤药物分子体系的构建及应用,省、市、自治区科技项目,2024年
  • 2. 磷光靶向药物研究与应用,省、市、自治区科技项目,2021年
  • 3. 聚集诱导发光铱配合物的构建及光动力抗肿瘤研究,国家自然科学基金项目,2020年
  • 4. 红外-近红外高效光敏剂的开发及其光动力治疗肿瘤应用研究,省、市、自治区科技项目,2020年
  • 5. 高效有机荧光纳米粒子的构筑及其生物成像性能研究,省、市、自治区科技项目,2019年
  • 6. 石墨烯功能改性软质聚氨酯阻燃复合材料在高铁列车铺椅方面的研制与应用,省、市、自治区科技项目,2016年
  • 7. 高效率磷光材料的设计合成,国家自然科学基金项目,2016年
  • 8. 功能化聚氨酯阻燃复合材料研制与应用,省、市、自治区科技项目,2016年
  • 9. 高效率离子型磷光材料的设计合成及其发光器件性能研究,省、市、自治区科技项目,2015年
  • 10. 高效率磷光材料的设计合成及其发光器件性能研究,国家自然科学基金项目,2014年
  • 11. 新型离子型铱配合物设计合成及其固态发光电化学池性能研究,国家自然科学基金项目,2012年
  • 12. 光电功能金属配合物的合成及其有机电致发光性能研究,省、市、自治区科技项目,2010年
  • 13. 傅立叶变换红外光谱法在环境污染防治技术中的应用研究,吉林省环保局,2009年
  • 14. 双西佛碱金属络合物的电致发光性能及理论研究,校内自然科学青年基金,2009年
  • 15. 星型结构与金属磷光配合物的合成及其在电致发光中的应用,校内自然科学青年基金,2009年
  • 专著:
  • 1. 仪器分析实验,科学出版社,01-5年
  • 论文:
  • 1. An AIE Metal Iridium Complex: Photophysical Properties and Singlet Oxygen Generation Capacity,MOLECULES,2023年
  • 2. Self-assembled nanoparticles based on cationic mono-/AIE tetra-nuclear Ir(III) complexes: long wavelength absorption/near-infrared emission photosensitizers for photodynamic therapy,DALTON TRANSACTIONS,2023年
  • 3. AIE-active Ir(iii) complexes functionalised with a cationic Schiff base ligand: synthesis, photophysical properties and applications in photodynamic therapy,DALTON TRANSACTIONS,2022年
  • 4. AIE-active iridium(III) complex integrated with upconversion nanoparticles for NIR-irradiated photodynamic therapy,CHEMICAL COMMUNICATIONS,2022年
  • 5. Surface modification strategy based on molecular engineering of an organic cation toward spectrally stable deep-blue emission perovskites,JOURNAL OF MATERIALS CHEMISTRY C,2022年
  • 6. Molecular engineering of s-triazine and its derivatives applied in surface modification strategy for enhancing photoelectric performance of all-inorganic perovskites,CHINESE CHEM LETT,2022年
  • 7. Supramolecular oligourethane gels as light-harvesting antennae: achieving multicolour luminescence and white-light emission through FRET,JOURNAL OF MATERIALS CHEMISTRY C,2021年
  • 8. Tunable Dual-Color Emission Perovskites via Post-Synthetic Modification Strategy for Near-Unity Photoluminescence Quantum Yield,ACS APPLIED MATERIALS & INTERFACES,2021年
  • 9. Rational design of iridium-porphyrin conjugates for novel synergistic photodynamic and photothermal therapy anticancer agents,CHEMICAL SCIENCE,2021年
  • 10. Understanding Mechanochromic Luminescence on Account of Molecular Level Based on Phosphorescent Iridium(III) Complex Isomers,INORG CHEM,2021年
  • 11. Synthesis, characterization of mechanochromic luminescent-active mono-/dinuclear iridium(III) complexes with near-infrared emission,J ORGANOMET CHEM,2021年
  • 12. Recent advances in oligomers/polymers with unconventional chromophores,MATERIALS CHEMISTRY FRONTIERS,2021年
  • 13. Near-infrared-emitting AIE multinuclear cationic Ir(III) complex-assembled nanoparticles for photodynamic therapy,DALTON T,2020年
  • 14. A mechanochromic cyclemetalated cationic Ir( III ) complex with AIE activity by strategic modification of ligands,DALTON T,2020年
  • 15. Synthesis, characterization, photo-and-electrochemical properties of cationic iridium(III) complexes by using 1,3,4-oxadiazole cyclometallating ligand,INORG CHEM COMMUN,2020年
  • 16. Water-soluble cyclometalated Ir( III ) complexes as carrier-free and pure nanoparticle photosensitizers for photodynamic therapy and cell imaging,DALTON T,2020年
  • 17. Supramolecular oligourethane gel as a highly selective fluorescent "on-off-on" sensor for ions,JOURNAL OF MATERIALS CHEMISTRY C,2020年
  • 18. Supramolecular Oligourethane Gel with Multicolor Luminescence Controlled by Mechanically Sensitive Hydrogen-Bonding,CHEM MATER,2020年
  • 19. A controllable and reversible phase transformation between all-inorganic perovskites for white light emitting diodes,JOURNAL OF MATERIALS CHEMISTRY C,2020年
  • 20. Blue-emitting thermoreversible oligourethane gelators with aggregation-induced emission properties,JOURNAL OF MATERIALS CHEMISTRY C,2020年
  • 21. Dinuclear metal complexes: multifunctional properties and applications,CHEM SOC REV,2020年
  • 22. Cationic dinuclear Ir(III) complexes based on acylhydrazine ligands: Reversible piezochromic luminescence and AIE behaviours,DYES PIGMENTS,2020年
  • 23. Bright red aggregation-induced emission nanoparticles for multifunctional applications in cancer therapy,CHEMICAL SCIENCE,2020年
  • 24. Reversible tricolour luminescence switching based on a piezochromic iridium( III ) complex,CHEM COMMUN,2019年
  • 25. Inorganic perovskite engineering through incorporation of a carboxylic acid containing ligand for performance enhancement in perovskite light-emitting diodes,JOURNAL OF MATERIALS CHEMISTRY C,2019年
  • 26. Highly convergent modular access to poly-carbon substituted cyclopropanes via Cu(I)-catalyzed three-component cyclopropene carboallylation,Organic Chemistry Frontiers,2019年
  • 27. Strategic modification of ligands for remarkable piezochromic luminescence(PCL) based on a neutral Ir(III) phosphor,JOURNAL OF MATERIALS CHEMISTRY C,2019年
  • 28. Photosensitizers based on Ir(III) complexes for highly efficient photocatalytic hydrogen generation,DYES PIGMENTS,2019年
  • 29. Ligand-Induced Tunable Dual-Color Emission Based on Lead Halide Perovskites for White Light-Emitting Diodes,ACS APPLIED MATERIALS & INTERFACES,2019年
  • 30. Ultrafast and Noninvasive Long-Term Bioimaging with Highly Stable Red Aggregation-Induced Emission Nanoparticles,ANAL CHEM,2019年
  • 31. A remarkable phosphorescent sensor for acid-base vapours based on an AIPE-active Ir(III) complex,DALTON T,2019年
  • 32. AIE Multinuclear Ir(III) Complexes for Biocompatible Organic Nanoparticles with Highly Enhanced Photodynamic Performance,ADVANCED SCIENCE,2019年
  • 33. New cationic Ir(III) complexes without "any soft substituents": aggregation-induced emission and piezochromic luminescence,JOURNAL OF MATERIALS CHEMISTRY C,2018年
  • 34. Polyurethane derivatives for highly sensitive and selective fluorescence detection of 2,4,6-trinitrophenol(TNP),JOURNAL OF MATERIALS CHEMISTRY C,2018年
  • 35. Tricolor White-Light-Emitting Carbon Dots with Multiple-Cores@Shell Structure for WLED Application,ACS APPLIED MATERIALS & INTERFACES,2018年
  • 36. Aggregation-Induced Long-Lived Phosphorescence in Nonconjugated Polyurethane Derivatives at 77 K,MACROMOLECULES,2018年
  • 37. Exploiting aggregation induced emission and twisted intramolecular charge transfer in a BODIPY dye for selective sensing of fluoride in aqueous medium and living cells,J PHOTOCH PHOTOBIO A,2018年
  • 38. Selective sensing of 2,4,6-trinitrophenol (TNP) in aqueous media with "aggregation-induced emission enhancement" (AIEE)-active iridium(III) complexes,CHEM COMMUN,2018年
  • 39. Selective sensing of 2,4,6-trinitrophenol(TNP) in aqueous media with "aggregation-induced emission enhancement" (AIEE)-active iridium(III) complexes,CHEM COMMUN,2018年
  • 40. Recent advances in luminescent dinuclear iridium(III) complexes and their application in organic electroluminescent devices,POLYHEDRON,2018年
  • 41. An AIE-active phosphorescent Ir(III) complex with piezochromic luminescence (PCL) and its application for monitoring volatile organic compounds (VOCs),JOURNAL OF MATERIALS CHEMISTRY C,2017年
  • 42. Thermally Activated Delayed Fluorescence in CuI Complexes Originating from Restricted Molecular Vibrations,CHEM-EUR J,2017年
  • 43. Color Tuning of Efficient Electroluminescence in the Blue and Green Regions Using Heteroleptic Iridium Complexes with 2-Phenoxyoxazole Ancillary Ligands,ORGANOMETALLICS,2017年
  • 44. A neutral dinuclear Ir(III) complex for anti-counterfeiting and data encryption,CHEM COMMUN,2017年
  • 45. Fluorescence response and detection of Cu2+ with 2-(2-hydroxyphenyl)benzimidazole in aqueous medium,INORG CHEM COMMUN,2017年
  • 46. A simple oxazoline as fluorescent sensor for Zn2+ in aqueous media,INORG CHEM COMMUN,2016年
  • 47. Anion-specific aggregation induced phosphorescence emission (AIPE) in an ionic iridium complex in aqueous media,CHEM COMMUN,2015年
  • 48. New AIE-active dinuclear Ir(III) complexes with reversible piezochromic phosphorescence behaviour,CHEM COMMUN,2015年
  • 49. Designed preparation of polyacrylic acid/calcium carbonate nanoparticles with high doxorubicin payload for liver cancer chemotherapy,CRYSTENGCOMM,2015年
  • 50. Very High Efficiency Orange-Red Light-Emitting Devices with Low Roll-Off at High Luminance Based on an Ideal Host–Guest System Consisting of Two Novel Phosphorescent Iridium Complexes with Bipolar Transport,ADV FUNCT MATER,2014年
  • 51. Shedding Light on the Photophysical Properties of Iridium(III) Complexes with N-Heterocyclic Carbene Ligands from a Theoretical Viewpoint,J PHYS CHEM A,2014年
  • 52. New ionic dinuclear Ir(III) Schiff base complexes with aggregation-induced phosphorescent emission (AIPE),CHEM COMMUN,2014年
  • 53. Intramolecular π Stacking in Cationic Iridium(III) Complexes with Phenyl-Functionalized Cyclometalated Ligands: Synthesis, Structure, Photophysical Properties,and Theoretical Studies,EUR J INORG CHEM,2014年
  • 54. Iridium(iii) complexes adopting 1,2-diphenyl-1H-benzoimidazole ligands for highly efficient organic light-emitting diodes with low efficiency roll-off and non-doped feature,JOURNAL OF MATERIALS CHEMISTRY C,2014年
  • 55. Well-dispersed Pt nanoparticles on polydopamine-coated ordered mesoporous carbons and their electrocatalytic application,TALANTA,2014年
  • 56. Efficient greenish-blue phosphorescent iridium(III) complexes containing carbene and triazole chromophores for organic light-emitting diodes,J ORGANOMET CHEM,2014年
  • 57. Efficient and tunable white-light emission of metal–organic frameworks by iridium-complex encapsulation,Nature Communications,2013年
  • 58. Eficient Light-Emitting Electrochemical Cells(LECs) Based on Ionic Iridium(III) Complexes with 1,3,4-Oxadiazole Ligands,ADV FUNCT MATER,2013年
  • 59. New oxazoline- and thiazoline-containing heteroleptic iridium(III) complexes for highly-efficient phosphorescent organic light-emitting devices (PhOLEDs): colour tuning by varying the electroluminescence bandwidth,JOURNAL OF MATERIALS CHEMISTRY C,2013年
  • 60. Influence of alkyl chain lengths on the properties of iridium(III)-based piezochromic luminescent dyes with triazole-pyridine type ancillary ligands,DYES PIGMENTS,2013年
  • 61. An orange iridium(III) complex with wide-bandwidth in electroluminescence for fabrication of high-quality white organic light-emitting diodes,JOURNAL OF MATERIALS CHEMISTRY C,2013年
  • 62. Enhancing the luminescence properties and stability of cationic iridium(III) complexes based on phenylbenzoimidazole ligand: a combined experimental and theoretical study,DALTON T,2013年
  • 63. Controllable synthesis of iridium(III)-based aggregation-induced emission and/or piezochromic luminescence phosphors by simply adjusting the substitution on ancillary ligands,JOURNAL OF MATERIALS CHEMISTRY C,2013年
  • 64. Synthesis, structure and photophysical properties of cationic Ir(III) complexes with functionalized 1,10-phenanthroline ancillary ligands,J ORGANOMET CHEM,2012年
  • 65. Piezochromic luminescence (PCL) behavior and aggregation-induced emission (AIE) property of a new cationic iridium(III) complex,DALTON T,2012年
  • 66. Intramolecular π-stacking in cationic iridium(III) complexes with a triazole-pyridine type ancillary ligand: synthesis, photophysics, electrochemistry properties and piezochromic behavior,J MATER CHEM,2012年
  • 67. Synthesis of cationic iridium(III) complexes with high quantum yield via enhancing the steric hindrance of ligands,J ORGANOMET CHEM,2012年
  • 68. Red- and White-Emitting Organic Light-Emitting Diodes based on Trimetallic Dendritic Europium (III) Complex: Eu3(DBM)9(TMMB),SOLID STATE ELECTRON,2012年
  • 69. Reversible piezochromic behavior of two new cationic iridium(III) complexes,CHEM COMMUN,2012年
  • 70. A cationic iridium(III) complex showing aggregation-induced phosphorescent emission (AIPE) in the solid state: synthesis, characterization and properties,DALTON T,2012年
  • 71. Creation of cationic iridium(III) complexes with aggregation-induced phosphorescent emission (AIPE) properties by increasing rotation groups on carbazole peripheries,DALTON T,2011年
  • 72. A comparison of the electrocatalytic activities of ordered mesoporous carbons treated with either HNO3 or NaOH,ELECTROCHIM ACTA,2010年
  • 73. 溴化1-甲基-3-丁基咪唑的微波辅助合成及工业化方案研究,东北师大学报.自然科学版,2010年
  • 74. Preparation and Photoluminescence Properties of Bidentate Ligand Containing Electro-transporting Group and Its Europium(Ⅲ) Complex Eu(DBM)3(DPOP),CHINESE J INORG CHEM,2009年
  • 75. Bottom-Up Synthesis of Porous Coordination Frameworks: Apical Substitution of a Pentanuclear Tetrahedral Precursor,ANGEW CHEM INT EDIT,2009年
  • 76. 燃油各组分在咪唑盐类离子液体中溶解性的研究,东北师大学报.自然科学版,2009年
  • 77. A series of lead(II)-organic frameworks based on pyridyl carboxylate acid N-oxide derivatives: Syntheses, structures, and luminescent properties,CRYST GROWTH DES,2008年
  • 78. Open framework complex constructed from polyoxometalate and dinuclear Cu–phenanthroline,J MOL STRUCT,2008年
  • 79. Assembly of a new Wells–Dawson polyoxometalate-templated compound based on Fe-btb complex,INORG CHEM COMMUN,2008年
  • 80. Ordered Mesoporous Carbon Paste Electrodes for Electrochemical Sensing and Biosensing,ELECTROANAL,2008年
  • 81. Syntheses and characterizations of four metal coordination polymers constructed by the pyridine-3,5-dicarboxylate ligand,POLYHEDRON,2008年
  • 82. rac-Bis{[1-(9,9-dioxo-10H-phenothiazin-10-yl)-2-propyl]dimethylammonium} terephthalate trihydrate,Acta Crystallographica Section E Structure Reports Online,2007年
  • 83. Influence of phase structure of TiO2 nanocrystals on the up-conversion photoluminescence properties of Er3+-Yb3+ co-doped systems,Abstract book of colloquium spectroscopocum internationale ⅩⅩⅩⅤ,2007年
  • 84. 新型卟啉化合物的合成及性质,CHEM J CHINESE U,2007年
  • 85. 含水杨醛缩苯胺双Schiff碱和吡啶配体的Zn(II)配合物的电子结构和二阶非线性光学性质,CHEM J CHINESE U,2007年
  • 86. 高效制备液相色谱法分离制备菱角壳中的生物碱,东北师大学报(自然科学版),2007年
  • 87. Design and synthesis of 1,4-bis[4-(1,1-dicyanovinyl)styryl]-2,5-bis(alkoxy)benzenes as red organic electroluminescent PPV analogs,POLYMER,2007年
  • 88. cis-Dichlorobis[2-(2-pyridyl)-1H-imidazole-_N3]zinc(II) hemihydrate,Acta Crystallographica Section E Structure Reports Online,2006年
  • 89. 水杨醛缩乙二胺双席夫碱及其Ni (II)配合物的电子结构和非线性光学性质的INDO/CI研究,CHEM J CHINESE U,2006年
  • 90. Synthesis ,crystal structures and properties of five-coordinate Schiff-base,J COORD CHEM,2006年
  • 91. 基于弱氢键相互作用形成的层状有机超分子晶体,分子科学学报,2006年
  • 92. Theoretical study on geometrical structure and electronic spectrum properties of two stable conformers of boron hydroxyphenylpyridine excimers,J MOL STRUC-THEOCHEM,2005年
  • 93. 双水杨醛缩苯二胺锌荧光量子效率的研究,东北师大学报(自然科学版),2004年
  • 94. 双水杨醛缩环己二胺类西佛碱及其配合物的合成、性质研究,分子科学学报,2004年
  • 95. Syntheses and Structure of a Novel Layered Lanthanide–Zinc Coordination Polymer: [LaZn(HIDA)(IDA)2?0.5H2O]n,CHEM LETT,2004年
  • 96. A novel strong fluorescent three-dimensional supramolecular coordination polymer based on bridging terephthalate,INORG CHEM COMMUN,2004年
  • 97. 二维电荷转移型水杨醛缩乙二胺类双席夫碱及其Zn(II)配合物的电子光谱及非线性光学性质的DFT理论研究,CHEM J CHINESE U,2003年
  • 98. TD-DFT study on electronic spectrum property for Bepp2 and its related complexes,SYNTHETIC MET,2003年
  • 99. Theoretical studies on electronic spectrum property of 2-(2-hydroxyphenyl)pyridine via time-dependence density functional theory method,CHEM RES CHINESE U,2003年
  • 100. A Novel Method for Synthesizing 4,4 -Bis,Chem. Res. Chin. Univ. ,2002年
  • 101. THEORETICAL STUDY ON STRUCTURE AND NONLINEAR OPTICAL PROPERTIES OF N,N-BISPHENYL DIAMINE SCHIFF BASE Ni(II) complexes,科学与技术合成金属国际会议(上海) ,2002年
  • 102. 酚醛树脂热裂解碳阳极的不可逆容量损失,高等学校化学学报,2001年
  • 103. GC/MS法研究焦炉烟气中多环芳烃类污染物,应用化学,2001年
  • 104. Quantum chemical studies on intercalation of lithium into polyacene,Synth. Met. ,2001年
  • 105. 焦炉烟气中有机污染物的GC-MS测定,分析测试学报,2000年
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