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photo闵乾昊 副教授
研究方向基于纳米材料的生物分离、质谱分析、细胞成像及载药研究
联系方式
个人简历

2003.09-2007.07  南京大学化学化工学院,化学学士

2007.09-2012.03  南京大学化学化工学院,分析化学博士

2012.04-2015.03  南京大学化学化工学院,助理研究员

2013.12-2014.12  美国斯坦福大学化学系,访问学者

2015.04-2015.06  南京大学化学化工学院,副研究员

2015.07 至今     南京大学化学化工学院,副教授
教    学
科    研围绕功能性纳米材料,面向生物分子,设计生物选择性纳米探针,依托生物质谱和光学成像技术,构建了针对蛋白质组学、细胞生物学、细胞载药研究的分析平台,以解决生命科学中的重大问题。具体的研究主要围绕着基于纳米探针的生物分离和细胞分析展开。现主持国家自然科学基金、教育部博士点基金等项目。已在J. Am. Chem. Soc.Angew. Chem. Int. Ed.ACS NanoChem. Sci.Anal. Chem.Chem. Commun.等刊物上发表论文15篇。
主要论著

1.    Z. Chen, J. Li, X. Chen, J. Cao, J. Zhang, Q. Min*, J.-J. Zhu*, Single gold@silver nanoprobes for real-time tracing the entire autophagy process at single-cell level. Journal of the American Chemical Society 137(5): 1903-1908 (2015)

2.    P. Zhang, Z. He, C. Wang, J. Chen, J. Zhao, X. Zhu, C.-Z. Li, Q. Min*, J.-J. Zhu*, In Situ Amplification of Intracellular MicroRNA with MNAzyme Nanodevices for Multiplexed Imaging, Logic Operation, and Controlled Drug Release. ACS nano 9(1): 789-798 (2015)

3.    P. Zhang, F. Cheng, R. Zhou, J. Cao, J. Li, C. Burda, Q. Min*, J.-J. Zhu*, DNA-Hybrid-Gated Multifunctional Mesoporous Silica Nanocarriers for Dual-Targeted and MicroRNA-Responsive Controlled Drug Delivery. Angewandte Chemie-International Edition 53(9): 2371-2375 (2014)

4.    Q. Min, X. Zhang, X. Chen, S. Li, J.-J. Zhu*, N-Doped Graphene: An Alternative Carbon-Based Matrix for Highly Efficient Detection of Small Molecules by Negative Ion MALDI-TOF MS. Analytical Chemistry 86(18): 9122-9130 (2014)

5.    J. Li, W. Wang, D. Sun, J. Chen, P.-H. Zhang, J.-R. Zhang, Q. Min*, J.-J. Zhu*, Aptamer-functionalized silver nanoclusters-mediated cell type-specific siRNA delivery and tracking. Chemical Science 4(9): 3514-3521 (2013)

6.    Q. Min, X. Chen, X. Zhang, J.-J. Zhu*, Tailoring of a TiO2 nanotube array-integrated portable microdevice for efficient on-chip enrichment and isotope labeling of serum phosphopeptides. Lab on a Chip 13(19): 3853-3861 (2013)

7.    Q. Min, X. Zhang, H. Zhang, F. Zhou*, J.-J. Zhu*, Synthesis of Fe3O4-graphene-TiO2 ternary composite networks for enhanced capture of phosphopeptides. Chemical Communications 47(42): 11709-11711 (2011)

8.    Q. Min, X. Zhang, R. Wu, H. Zou*, J.-J. Zhu*, A novel magnetic mesoporous silica packed S-shaped microfluidic reactor for online proteolysis of low-MW proteome. Chemical Communications 47(38): 10725-10727 (2011)

9.    Q. Min, R. Wu, L. Zhao, H. Qin, M. Ye, J.-J. Zhu*, H. Zou*, Size-selective proteolysis on mesoporous silica-based trypsin nanoreactor for low-MW proteome analysis. Chemical Communications 46(33): 6144-6146 (2010)

10.  Chen, X.; Li, S.; Zhang, X.; Min, Q. *; Zhu, J.-J. Weaving a two-dimensional fishing net of Fe3O4 nanocrystals-embedded titanoniobate nanosheet for highly efficient capture and isotope labeling of phosphopeptides. Nanoscale  7: 5815–5825 (2015)