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翟璐
阅读次数: 添加时间:2025/09/16 发布:  更新时间:2026-03-26


博士,副研究员,硕士生导师


办公地址:化学学科楼B415

Email: zhailu@njtech.edu.com


教育及工作经历

2020/07−至今  南京工业大学 化学与分子工程学院,副研究员

2017/11−2019/11 日本产业综合研究所(AIST), 博士后

2015/07−2019/07 南京工业大学,化学与分子工程学院,博士后

2010/09−2015/06 南京工业大学,化学与分子工程学院,硕士/博士: 应用化学   

           南京大学,配位化学全国重点实验室(联合培养)

2006/09−2010/06 南京工业大学,理学院,学士: 应用化学


研究领域和科研项目

从事超分子组装、无机-有机杂化材料结构设计与制备,结构相变、圆偏振发光和铁电等功能性质,以及相关器件研究。在上述领域,以第一作者/通讯作者在Angew. Chem. Int. Ed., Chem. Sci., Small; Inorg. Chem., J. Mater. Chem. C., Mater. Chem. Front., Dalton Trans等国际学术期刊上发表研究论文20余篇。承担并完成了国家自然科学基金青年科学基金项目一项。


发表论文

1. Jiayi Yuan, Yu Xu, Lu Zhai,* Shan-Shan Hei, Jianyi Huang, Weihua Ning,* Hong-Ling Cai* and Xiao-Ming Ren,* “Rotational symmetry dication assembling ferroelectric, thermochromic and circularly polarized luminescent multifunctional manganese(II) bromide hybrid”, Chem. Sci., 2026, DOI: 10.1039/d5sc08499g.

2. Xue-Wei Pan, Jiayi Yuan, Lu Zhai,* Zheng-Fang Tian and Xiao-Ming Ren,* “Water Confined in Sub-Nanochannels of Supramolecular Crystals Exhibiting Ice-Water-Like Phase Transition near Room Temperature”, Small 2025, e08618.

3. Shan-Shan Hei, Yu Xu, Xue-Wei Pan, Lu Zhai,* Zheng-Fang Tian, and Xiao-Ming Ren, “Dual-Switchable Dielectric and Photoluminescence Response in Organic−Inorganic Manganese Halide Hybrids”, Inorg. Chem., 2025, 64, 16214−16222.

4. Lu Zhai, Jiayi Yuan, Jianyi Huang, Xue-Wei Pan, Li Wan, Weihua Ning,* and Xiao-Ming Ren*, “Efficient Circularly Polarized Luminescence from Mn-Br Hybrid Perovskite Assembled by Achiral Architectures”, Angew. Chem. Int. Ed. 2025, 64, e202425543.(Hot paper)

5. Xue−Wei Pan, Lu Zhai,* Jin Zhang, and Xiao−Ming Ren*, “Thermotropic Structure Phase Transitions and Two Types of Thermochromic Behaviors in a Bromoargentate Cluster [Prdabco]2Ag4Br6”, Inorg. Chem. 2024, 63, 2640−2646.

6. Xue-Wei Pan, Qing-Qing Li, Lu Zhai, * Jin Zhang, Wen-Long Liu and Xiao-Ming Ren*, “Organic-inorganic haloargentate hybrids of [Me-dabco]Ag2X3 (X = I or Br) with halide ions manipulating the crystal structure, phase transition, and dielectric behavior”, Dalton Trans., 2023, 52, 9472–9481.

7. Jin Zhang, Ru Zhang, Yangyang Liu, Ya-Ru Kong, Hong-Bin Luo,* Yang Zou, Lu Zhai,* and Xiao-Ming Ren, “Acidic Groups Functionalized Carbon Dots Capping Channels of a Proton Conductive Metal−Organic Framework by Coordination Bonds to Improve the Water-Retention Capacity and Boost Proton Conduction”, ACS Appl. Mater. Interfaces 2021, 13, 60084−60091.

8. Lu Zhai, Xiao-Ming Ren* and Qiang Xu, “Carbogenic p-conjugated domains as the origin of afterglow emissions in carbon dot-based organic composite films”, Mater. Chem. Front., 2021, 5, 4272–4279.

9. Lu Zhai, Jing−Wei Yu, Jin Zhang, Zhang Wen−Wei, Lifeng Wang and Xiao−Ming Ren, “High quantum yield pure blue emission and fast proton conduction from an indium−metal−organic framework”, Dalton Trans., 2019, 48, 12088−12095.

10. Lu Zhai, Zhu−Xi Yang, Wen−Wei Zhang, Jing−Lin Zuo and Xiao−Ming Ren, “Dual−emission and thermochromic luminescence alkaline earth metal coordination polymers and their blend films with polyvinylidene fluoride for detecting nitrobenzene vapor”, J. Mater. Chem. C., 2018, 6, 7030−7041.

11. Zhu−Xi Yang, Yin Qian, Jing−Wei Yu, Lu Zhai,* Wen−Wei Zhang and Xiao−Ming Ren, “Dimensionality of luminescent coordination polymers of magnesium ions and 1,1'−ethynebenzene−3, 3', 5, 5' −tetracarboxylic acid modulated by structural inducing agents”, RSC Adv., 2018, 8, 25489−25499.

12. Xiao−Shuo Wu, Yi−Xiong Wang, Shan−Qing Li, Yin Qian, Lu Zhai,* Xiao−Zu Wang and Xiao−Ming Ren, “Metal ion coordination enhancing quantum efficiency of ligand phosphorescence in a double−stranded helical chain coordination polymer of Pb2+ with nicotinic acid”, Dalton Trans., 2018, 47, 14636−14643.

13. Shao−Xian Liu, Guo−Jun Yuan, Lu Zhai,* Lifeng Wang, Hong−Bin Luo and Xiao−Ming Ren, “Dual emissions and thermochromic luminescences of isomorphic chiral twofold interpenetrated 3−D nets built from I1O2 type hybrid inorganic−organic frameworks of [NH2(CH3)2]3[Pb2X3(BDC)2](X = Br, I)”, Dalton Trans., 2018, 47, 14233−14240.

14. Lu Zhai, Zhu−Xi Yang, Wen−Wei Zhang, Jing−Lin Zuo and Xiao−Ming Ren, “Comprehensively understanding isomorphism and photoluminescent nature of two−dimensional coordination polymers of Cd(II) and Mn(II) with 1,1'−ethynebenzene−3, 3', 5, 5'−tetracarboxylic ligand”, Inorg. Chem., 2018, 57, 4171−4180.

15. Lu Zhai, Zhu−Xi Yang, Wen−Wei Zhang, Jing−Lin Zuo and Xiao−Ming Ren, “Surprisingly high quantum yield of emission in a fluorescent coordination polymer with paramagnetic Mn(II) ions”, Dalton Trans., 2017, 46, 16779−16782.

16. Lu Zhai, Zhu−Xi Yang, Wen−Wei Zhang, Jing−Lin Zuo and Xiao−Ming Ren, “Unprecedented (4, 6)−connected net with mixed−valence M2IIMIII trinuclear and M6II hexanuclear clusters (M=Ni, Co): syntheses, crystal structures, and magnetic properties”, Cryst. Growth Des., 2017, 17, 5263−5268.

17. Xiao Liu, Lu Zhai,* Wen−Wei Zhang, Xiao−Ming Ren and Jing−Lin Zuo, “Intense greenish phosphorescence emission under ambient condition in a two−dimensional lead(II) coordination polymer with 1,1'−ethynebenzene−3, 3', 5, 5'−tetracarboxylate ligand”, Dalton Trans., 2017, 46, 7953−7959.

18. Lu Zhai, Wen−Wei Zhang, Xiao−Ming Ren and Jing−Lin Zuo, “Simultaneous observation of ligand−based fluorescence and phosphorescence emission within a magnesium−based CP/MOF at room temperature”, Dalton Trans., 2016, 45, 11935–11938.

19. Lu Zhai, Wen−Wei Zhang, Xiao−Ming Ren and Jing−Lin Zuo, “A simple but efficient strategy to enhance hydrostability of intensely fluorescent Mgbased coordination polymer (CP) via forming a composite of CP with hydrophobic PVDF”, Dalton Trans., 2016, 45, 3372–3379.

20. Lu Zhai, Wen−Wei Zhang, Xiao−Ming Ren and Jing−Lin Zuo, “Luminescent lanthanide MOFs based on conjugated 1, 1'−ethynebenzene−3, 3', 5, 5'−tetracarboxylate ligand: syntheses, structures and photo- luminescent properties”, Dalton Trans., 2015, 44, 5746–5754.

21. Lu Zhai, Wen−Wei Zhang, Xiao−Ming Ren and Jing−Lin Zuo, “Observation of divergent La3+ ion dilute effect in two series of 3−D fluorescent lanthanide−MOFs−based molecular alloys RExLa1-x−EBTC (RE3+ = Eu3+ or Tb3+; EBTC4- = 1, 1−ethynebenzene−3, 3', 5, 5'−tetracarboxylate)”, J. Solid State Chem., 2015, 230, 14–18.


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