宋英攀 照片

宋英攀

讲师

所属大学: 郑州轻工业大学

所属学院: 材料与化学工程学院

邮箱:
ypsong@zzuli.edu.cn

个人主页:
http://hg.zzuli.edu.cn/2018/1024/c4344a185326/page.htm

个人简介

一、个人情况 宋英攀,女,1988年6月出生,河南省许昌市人,工学博士,讲师。主要从事纳米材料如金属有机框架材料(MOFs)、共价有机框架材料(COFs)的合成与制备;主要涉及生物传感性能、癌细胞多重检测、抗癌药物传输与控释等方面的研究。通过改变MOFs的端基配体与空间结构,对MOFs进行改性处理,或将MOFs与其他纳米材料或核酸适体链复合,可以制备出不同结构的MOFs、MOFs衍生物或MOFs基纳米复合材料,利用这些材料构筑电化学生物传感器检测目标分析物,所构筑的传感器对目标分析物的检测具有优异的电化学性能。 二、教育背景 2005.09-2009.06 郑州大学高分子材料与工程专业,获工学学士学位; 2009.09-2016.06 福州大学材料学专业,获工学博士学位 三、工作经历 2016.06-至今 郑州轻工业学院,材料与化学工程学院化学系,讲师

研究领域

纳米材料如金属有机框架材料、共价有机框架材料的合成与制备,研究结构对其电化学性能的影响;生物传感器的构筑及应用;癌细胞的多重检测;抗癌药物传输与控释等。

近期论文

(1) Yingpan Song, Chuanpan Guo, Hongfei Ji, Shuai Zhang, Minghua Wang, Linghao He, Donglai Peng, Zhihong Zhang*, CuxO@DNA sphere-based electrochemical bioassay for sensitive detection of Pb2+, Microchimica Acta, 2018, 185: 186. (2) Yingpan Song, Hongfei Ji, Minghua Wang, Linghao He, Ruirui Song, Zhihong Zhang*, Feasible synthesis of protein-templated zinc phosphate-supported Pt nanoparticle with enhanced electrocatalysis for methanol oxidation, Applied Surface Science, 2017, 422: 228-238. (3) Yingpan Song, Fenghe Duan, Shuai Zhang, Jia-Yue Tian, Zhihong Zhang*, Zhuo-Wei Wang, Chun-Sen Liu*, Wen-Ming Xu, Miao Du*, Iron oxide@mesoporous carbon architectures derived from an Fe(II)-based metal organic framework for highly sensitive oxytetracycline determination, Journal of Materials Chemistry A, 2017, 5(36): 19378-19389. (4) Yingpan Song, Huifang Hu, Miao Feng, Hongbing Zhan*, Carbon nanotubes with tailored density of electronic states for electrochemical applications, ACS Applied Materials & Interfaces, 2015, 7(46): 25793-25803. (5) Yingpan Song, Miao Feng, Hongbing Zhan*, Geometry-dependent electrochemistry of graphene oxide family, Electrochemistry Communications, 2015, 56: 38-42. (6) Yingpan Song, Miao Feng, Hongbing Zhan*, Electrochemistry of partially unzipped carbon nanotubes, Electrochemistry Communications, 2014, 45: 95-98. (7) 宋英攀, 冯苗, 詹红兵*, 石墨烯的边界效应在电化学生物传感器中的应用, 化学进展, 2013, 25(5): 698-706. (8) 宋英攀, 冯苗, 詹红兵*, 石墨烯纳米复合材料在电化学生物传感器中的应用, 化学进展, 2012, 24(9): 1665-1673. (9) Chuanpan Guo, Fangfang Su, Yingpan Song, Bin Hu, Minghua Wang, Linghao He, Donglai Peng, Zhihong Zhang*, Aptamer-templated silver nanoclusters embedded in zirconium metal-organic framework for bifunctional electrochemical and SPR aptasensors toward carcinoembryonic antigen, ACS Applied Materials & Interfaces, 2017, 9(47): 41188-41199. (10) Minghua Wang, Bin Hu, Hongfei Ji, Yingpan Song, Jiameng Liu, Donglai Peng, Linghao He, Zhihong Zhang*, Aptasensor based on hierarchical core-shell nanocomposites of zirconium hexacyanoferrate nanoparticles and mesoporous mFe3O4@mC: Electrochemical quantitation of epithelial tumor marker Mucin-1, ACS Omega, 2017, 2(10): 6809-6818. (11) Zhihong Zhang*, Hongfei Ji, Yingpan Song, Shuai Zhang, Minghua Wang, Changchang Jia, Jia-Yue Tian, Linghao He, Xiaojing Zhang, Chun-Sen Liu*, Fe(III)-based metal-organic framework-derived core-shell nanostructure: Sensitive electrochemical platform for high trace determination of heavy metal ions, Biosensors & Bioelectronics, 2017, 94: 358-364. (12) Linghao He, Fenghe Duan, Yingpan Song, Chuanpan Guo, Hui Zhao, Jia-Yue Tian, Zhihong Zhang, Chun-Sen Liu*, Xiaojing Zhang, Peiyuan Wang, Miao Du, Shao-Ming Fang*, 2D zirconium-based metal-organic framework nanosheets for highly sensitive detection of mucin 1: consistency between electrochemical and surface plasmon resonance methods, 2D Materials, 2017, 4(2): 025098. (13) Shumin Lan, Yingpan Song, Qidi Chen, Zhiyong Guo, Hongbing Zhan*, A novel platform based on defect-rich knotted graphene nanotubes for detection of small biomolecules, Electrochimica Acta, 2016, 217: 47-54. (14) Huifang Hu, Yingpan Song, Miao Feng, Hongbing Zhan*, Carbon nanomaterials for simultaneous determination of dopamine and uric acid in the presence of ascorbic acid: from one-dimensional to the quasi one-dimensional, Electrochimica Acta, 2016, 190: 40-48. (15) Yan Zhang, Yingpan Song, Yao Gan, Miao Feng, Hongbing Zhan*, Broadband nonlinear optical and optical limiting effects of partially unzipped carbon nanotubes, Journal of Materials Chemistry C, 2015, 38(3): 9948-9954.