
沈静林,女,副教授,理学博士,硕士生导师。主要研究方向是基于聚集诱导发光(AIE)和超分子自组装策略构筑的金属纳米团簇有序发光聚集体;基于环糊精和表面活性剂的包结作用构筑有序发光聚集体;石墨烯/氧化石墨烯复合凝胶材料的制备及其应用。近年来发表学术论文三十余篇,其中以第一作者在ACS Nano、ACS Appl. Mater. Interfaces、Chem. Commun.、Chem. Eur. J.、Nanoscale、J. Mater. Chem. C、J. Phys. Chem. C、Langmuir等国际TOP期刊发表论文十余篇。
联系方式: jinglinshen@163.com 实验室:永利402官网网址414、407室
教育背景
2020.12 - 至今 永利402官网网址,副教授
2018.09 – 2020.12:永利402官网网址,讲师
2013.09 – 2018.06:山东大学,博士(物理化学),导师:苑世领教授、辛霞副教授
2009.09 – 2013.06:聊城大学,学士(化学)
主持项目:
1. 国家自然科学基金青年项目:含金纳米簇手性有序聚集体的构筑及性能研究22002069,资助金额:24万元(2021.01 - 2023.12),主持
2. 山东省自然科学基金青年项目:两亲性金纳米簇的组装及其在可视化药物递送中的应用研究ZR2020QB062;资金金额:14万(2021.01-2023.12),主持
3. 曲阜师范大学科研启动基金,资助金额:20万,主持
发表论文:
工作后:
6. Jinglin Shen, Jin Feng,* Wei Qi,* A sensitive chemosensor for nitro-containing compounds based on Au nanoclusters/Ba2+ co-assembly system: The crucial role of ligands to metal charge transfer. Colloids Surf., A, 2021, 627, 127160.
5. Junxiao Liu, Jinglin Shen,* Jin Feng,* Wei Qi* Fabrication of a chiral luminescent hydrogel from gold nanoclusters via molecular recognition. Chem. Commun., 2021, 57, 10202. (自然指数期刊)
4. Jinglin Shen, Xia Xin,* Wei Qi,* Self-Assembled Chiral Phosphorescent Microflowers from Au Nanoclusters with Dual-Mode pH Sensing and Information Encryption. ACS Nano 2021, 15, 3, 4947-4955. (IF: 15.88自然指数期刊,一区TOP)
3. Junxiao Liu, Jinglin Shen,* Wei Qi,* Fabrication of a Luminescent Supramolecular Hydrogel Based on the AIE Strategy of Gold Nanoclusters and their Application as a Luminescence Switch. J. Phys. Chem. C, 2020, 124, 23844-23851.
2. Jinglin Shen, Wei Qi, * Co-assembly of gold nanocluster with imidazolium surfactant into ordered luminescent fibers based on aggregation induced emission strategy. J. Mol. Liq. 2019, 291, 111275.
1. Jinglin Shen, Di Sun,* Shiling Yuan,* Xia Xin,* Amphiphilicity Regulation of AgI Nanoclusters: Self-Assembly and Its Application as a Luminescent Probe. Chem. Eur. J. 2019, 25, 4713-4721.
博士期间:
12. Jinglin Shen, Di Sun,* Shiling Yuan,* Xia Xin,* pH-Responsive Nanovesicles with Enhanced Emission Co-Assembled by Ag(I) Nanoclusters and Polyethyleneimine as a Superior Sensor for Al3+. ACS Appl. Mater. Interfaces, 2018, 10, 3955-3963.
11. Jinglin Shen, Shiling Yuan,* Di Sun,* Xia Xin,* Self-Assembly of Water-Soluble Silver Nanoclusters: Superstructure Formation and Morphological Evolution. Nanoscale, 2017, 9, 19191-19200.
10. Jinglin Shen, Xia Xin,* Manipulation of multiple-responsive fluorescent supramolecular materials based on the inclusion complexation of cyclodextrins with Tyloxapol. J. Mater. Chem. C, 2015, 3, 8104-8113.
9. Jinglin Shen, Xia Xin,* Manipulation the behavior of supramolecular hydrogels of α-cyclodextrin/star-like block copolymer/carbon-based nanomaterials. Carbohydr. Polym., 2015, 117, 592-599.
8. Jinglin Shen, Xia Xin,* Shiling Yuan,* Fabrication of smart pH-responsive fluorescent solid-like giant vesicles by ionic self-Assembly strategy. J. Phys. Chem. C, 2016, 120, 27533-27540.
7. Jinglin Shen, Xia Xin,* Shiling Yuan,* Manipulation the properties of supramolecular hydrogels of α-cyclodextrin/Tyloxapol/carbon-based nanomaterials. J. Colloid Interface Sci., 2016, 468, 78-85.
6. Jinglin Shen, Xia Xin,* Shiling Yuan,* Ionic self-Assembly of a giant vesicle as a smart microcarrier and microreactor. Langmuir, 2016, 32, 9548-9556.
5. Jinglin Shen, Xia Xin,* Supramolecular hydrogels of α-cyclodextrin/reverse poloxamines/carbon-based nanomaterials and its multi-functional application. RSC Adv., 2015, 5, 40173-40182.
4. Jinglin Shen, Xia Xin,* Shiling Yuan,* Smart Stimuli-responsive Fluorescent Vesiclular Sensor Based on Inclusion Complexation of Cyclodextrins With Tyloxapol. RSC Adv., 2016, 6, 11683-11690.
3. Jinglin Shen, Xia Xin,* Self-assembled supramolecular hydrogel induced by α-cyclodextrin and ionic liquid-type imidazolium gemini surfactant. Colloids Surf., A, 2016, 509, 512-520.
2. Jinglin Shen, Shiling Yuan,* Xia Xin,* Formation of organogels with aggregation-induced emission characteristics triggered by thermal and ultrasound. Colloid. Polym. Sci., 2017, 295,1765-1772.
1. Jinglin Shen, Xia Xin.* Supramolecular Materials Based on Ionic Self-Assembly: Structure, Property, and Application. Molecular Self-assembly in Nanoscience and Nanotechnology. InTech, 2017.
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