馬科鋒

馬科鋒是南京理工大學,環境與生物工程學院,生物工程系的副教授,碩士生導師。

基本介紹

  • 中文名:馬科鋒
  • 國 籍:中國
  • 職 業:教師
  • 最高學位:博士
  • 職稱:副教授
教育背景,工作經歷,研究方向,科研項目,論文發表,

教育背景

2003.1-2009.2 喬治城大學(美國),有機化學,博士
1999.9-2002.5 南京理工大學化工學院,材料學,碩士
1995.9-1999.6 南京理工大學化工學院,高分子材料與工程,學士

工作經歷

2012.5-至今 南京理工大學生物工程系, 副教授
2009.5-2012.4 蘇州諾新科技有限公司,技術副總
2004.1-2009.2 喬治城大學化學系,研究助理

研究方向

(1)納米多孔材料的自組裝結構設計與合成
(2)自助裝材料在光學/電學生物感測器的套用研究

科研項目

  1. 聯合國環境規劃署國際合作縱向項目,中國民航系統哈龍使用現狀調查,2018/02-2019/02,資助金額:40萬,項目負責人。(已結題)
  2. 國家重點研發計畫-政府間國際科技創新合作重點創新專項,農業秸稈製取發酵工業用糖的生物煉製體系研究(2016YFE0105400),2016/12-2019/11;資助金額:353萬,項目子課題負責人。(已結題)
  3. 江蘇省自然科學基金面上項目,新型季鏻鹽離子液晶的分子設計及其模板製備研究(BK20141223),2014/07-2017/6,資助金額:15萬,項目負責人。(已結題)
  4. 中央高校基本科研業務費專項資金資助,新型低溫季鏻鹽離子液晶的構效關係及其在模板製備納米材料套用的研究(30920140121008),2014/01-2015/12,資助金額:20萬,項目負責人。(已結題)
  5. 國家自然科學基金青年項目,細胞穿膜肽-聚合物偶聯物的合成、組裝與載藥機制研究(21504044),2016/01-2018/12,資助金額:25萬,負責聚合物的工藝設計與製備,資助金額:5萬元,項目參與。(已結題)

論文發表

  1. Yu, M.; Xia, T.; Bai, W.; Ji, J.; Wang, H.; Huang, Y.; Deng, S.; Ma, K.; Su, Y.; Wan, Y. Handheld Aptasensor for Sandwiched Detection of Chloramphenicol, Chem. Res. Chinese U.2020, doi: 10.1007/s40242-020-9076-7.
  2. Liu, G.; Hong, J.; Ma, K.; Wan, Y.; Zhang, X.; Huang, Y.; Kang, K.; Yang, M.; Chen, J.; Deng, S. Porphyrin Trio-Pendant Fullerene Guest as an In situ Universal Probe of High ECL Efficiency for Sensitive MiRNA Detection, Biosens Bioelectron2020, 150, 111963-111970.
  3. Hu, B.; Zhang, W; Yu, C.; Zheng, Z.; Chen, Y.; Wang, J.; Liu, J.; Ma, K.; Ren, W. Electrochemical Synthesis of Al/CuO Thermite Films on Copper Substrates, Ind. Eng. Chem. Res.2019, 58, 7131-7138.
  4. Zhang, W.; Jiang, B.; Ma, X.; Wang, J.; Liu, J.; Wu, R.; Zheng, Z.; Liu, J.; Ma, K. Controllable Synthesis of Multi-shelled NiCo2O4 Hollow Spheres Catalytically for the Thermal Decomposition of Ammonium Perchlorate, RSC Adv.2019, 9, 23888-23893.
  5. Zheng, C.; Sheng, Y.; Liu, Y.; Wan, Y.; Liu, G.; Zhang, X.; Yang, M.; Kang, K.; Liu, J.; Ma, K.; Deng, S. Enhanced Electrochemiluminescent Brightness and Stability of Porphyrins by Supramolecular Pinning and Pinching for Sensitive Zinc Detection, Anal. Bioanal. Chem. 2019, 411, 4797-4806.
  6. Liu, Q.; Ma, K.; Wen, D.; Sun, H.; Wang, Q.; Kong, J.; Qiu, Y.; Li, L.; Chen, W. BisPNA-Assisted Detection of Double-stranded DNA via Electrochemical Impedance Spectroscopy, Electroanal.2019, 31, 160-166.
  7. Wang, J.; Zhang, W.; Zheng, Z.; Liu, J.; Yu, C.; Chen, Y.; Ma, K. Adjustment Engineering in the Surface Morphology Structure and Electronic Properties of TCNQ-based Nanoarrays for Oxygen Evolution, Mater. Lett.2019, 236, 346-349.
  8. 洪伽金, 劉勇, 陳嘉亮, 馬科鋒離子液體在生物工程方面的研究進展, 化學通報, 2018, 81, 1072-1077.
  9. Wang, J.; Zhang, W.; Zheng, Z.; Liu, J.; Yu, C.; Chen, Y.; Ma, K. Dendritic Core-shell Ni@Ni(Fe)OOH Metal/metal Oxyhydroxide Electrode for Efficient Oxygen Evolution Reaction, Appl. Surf. Sci.2018, 469, 731-738.
  10. Wang, Q.; Ma, K.; Yu, Z.; Ding, J.; Hu, Q.; Liu, Q.; Sun, H.; Wen, D.; Liu, Q.; Kong, J. The Peroxidase-like Catalytic Activity of Ferrocene and Its Application in the Biomimetic Synthesis of Microsphere Polyaniline, New J. Chem.2018, 42, 13536-13540.
  11. Wen, D.; He, M.; Ma, K.; Cui, Y.; Kong, J.; Yang, H.; Liu, Q. Highly Sensitive Fluorometric Determination of Thrombin by On-chip Signal Amplification Initiated by Terminal Deoxynucleotidyl Transferase, Microchim. Acta2018, 185, 380-387.
  12. Liu, Q.; Ma, K.; Wen, D.; Wang, Q.; Sun, H.; Liu, Q.; Kong, J.Electrochemically Mediated ATRP (eATRP) Amplification for Ultrasensitive Detection of Glucose, J. Electroanal. Chem.2018, 823, 20-25.
  13. Yu, C.; Zhang, W.; Hu, B.; Ni, D.; Zheng, Z.; Liu J.; Ma, K.; Ren, W. Core/shell CuO/Al Nanorods Thermite Film Based on Electrochemical Anodization, Nanotechnology2018, 29, 36LT02. https://doi.org/10.1088/1361-6528/aacc57.
  14. Chen, Y.; Ma, K.; Wang, J.; Gao, Y.; Zhu, X.; Zhang, W. Catalytic Activities of Two Different Morphological Nano-MnO2 on the Thermal Decomposition of Ammonium Perchlorate, Mater. Res. Bull.2018, 101, 56-60.
  15. Yu, C.; Zhang, W.; Gao, Y.; Ni, D.; Ye, J.; Zhu, C.; Ma, K. The Super-hydrophobic Thermite Film of the CO3O4/Al Core/shell Nanowires for an Underwater Ignition with a Favorable Aging-resistance, Chem. Eng. J.2018, 338, 99-106.
  16. Chen, Y.; Zhang, W.*; Yu, C.; Ni, D.; Ma, K.; Ye, J. Controllable Synthesis of NiCo2O4/Al Core/shell Nanowires Thermite Film with Excellent Heat Release and Short Ignition Time, Mater. Design2018, 155, 396-403.
  17. Zheng, Z.; Zhang, W.; Yu, C.; Zheng, G.; Ma, K.; Qin, Z.; Ye, J.; Chao, Y. The Integration of the 3DOM Al/Co3O4 Nanothermites Film with a Semiconductor Bridge to Realize a High-output Micro-energetic Igniter, RSC Adv.2018, 8, 2552-2560.
  18. Yu, C.; Zhang, W.; Gao, Y.; Chen, Y.; Ma, K.; Ye, J.; Shen, R.; Yang, Y. Shape-controlled Syntheses of Co3O4 Nanowires Arrays with Excellent Catalytic Performances upon Ammonium Perchlorate Decomposition, Mater. Res. Bull.2018, 97, 483-489.
  19. 楊子云, 馬科鋒, 何禹錕, 龍旭偉Surfactin的生產及在石油工業的套用研究進展, 生物加工過程2018, 16, 67-74.
  20. Wang, J.; Zhang, W.; Zheng, Z.; Gao, Y.; Ma, K.; Ye, J.; Yang, Y. Enhanced Thermal Decompostion Properties of Ammonium Perchlorate Through Addition of 3DOM Core-shell Fe2O3/Co3O4 Compisite, J. Alloy. Compd.2017, 724, 720-727.
  21. Gu, S.;Ma, K.; Kong, J.; Al-Ghanim, A. K.; Mahboob, S.; Liu, Y.; Zhang, X. Functionalized Polyethyleneimine-gold Nanoparticles-Porphyrin Nanocomposite for Electrochemical Glucose Biosensing, Int. J. Electrochem. Sci.2017, 12, 5092-5103.
  22. Hu, Q.; Ma, K.; Mei, Y.; He, M.; Kong, J.; Zhang, X. Metal-to-Ligand Charge-Transfer: Applications to the Visual Detection of β-Galactosidase Activity and Sandwich Immunoassay, Talanta2017, 167, 253-259.
  23. Shan, W.; Yang, P.; Lu, H.; Ma, K.; Huang, Z. Influence of Coastal Wind on Surface Ozone and Nitrogen Oxides in Suburban Shanghai, Asia-Pac. J. Atmos. Sci.2016, 52, 451-458.
  24. Yao, C.; Song, H.; Wan, Y.; Ma, K.; Zheng, C.; Cui, H.; Xin, P.; Ji, X.; Deng, Y. Electro-Photodynamic Visualization of Singlet Oxygen Induced by Zinc Porphyrin Modified Microchip in Aqueous Media, ACS Appl. Mater. Inter.2016, 8, 34833-34843.
  25. Liu, D.; Pang, T.; Ma, K.; Jiang, W.; Bao, X. A New Highly Sensitive and Selective Fluorescence Chemosensor for Cr Based on Rhodamine B and a 4,13-Diaza-18-crown 6-ether Conjugate, RSC Adv.2013, 4, 2563-2567.
  26. Ma, K.; Lee, G.; Minkova, L.; Weiss, R. G. Design Criteria for Ionic Liquid Crystalline Phases of Phosphonium Salts with Three Equivalent Long n-Alkyl Chains, J. Org. Chem. 2009, 74, 2088-2098.
  27. Cristiano, R.; Ma, K.; Pottanat, G.; Weiss, R. G. Tetraalkylphosphonium Trihalides, Room Temperature Ionic Liquids as Halogenation Reagents, J. Org. Chem.2009, 74, 9027-9033.
  28. Ma, K.; Li S.; Weiss, R. G. Stereoselective Brominations Reactions Using tri-Decylmethyl- phosphonium Tribromide in a ‘Stacked’ Reactor, Org. Lett.2008, 10, 4155-4158.
  29. Ma K.; Somashekhar, B. S.; Nagana Gowda, G. A.; Khetrapal, C. L.; Weiss, R. G. Induced Amphotropic and Thermotropic Ionic Liquid Crystallinity in Phosphonium Halides: ‘Lubrication’ by Hydroxyl Groups, Langmuir 2008, 24, 2746-2758.
  30. Ma, K.;Shahkhatuni, A. A.; Somashekhar, B. S.; Nagana Gowda, G. A.; Tong, Y.; Khetrapal, C. L.; Weiss, R. G. Room-Temperature and Low-Ordered, Amphotropic-Lyotropic Ionic Liquid Crystal Phases Induced by Alcohols in Phosphonium Halides, Langmuir2008, 24, 9843-9854.
  31. Shahkhatuni,A. A.; Ma, K.; Weiss, R. G. Designing Amphotropic Smectic Liquid Crystals Based on Phosphonium Salts for Partial Ordering of Solutes as Monitored by NMR Spectroscopy, J. Phys. Chem. B2009, 113, 4209-4217.

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