Improving the microenvironment for enzyme immobilization at electrodes by hydrophobically modifying chitosan and Nafion® polymers

被引:79
作者
Klotzbach, Tamara L. [1 ]
Watt, Michelle [1 ]
Ansari, Yasmin [1 ]
Minteer, Shelley D. [1 ]
机构
[1] St Louis Univ, Dept Chem, St Louis, MO 63103 USA
关键词
micellar polymer; Nafion (R); chitosan; enzyme immobilization; enzyme modified electrode;
D O I
10.1016/j.memsci.2007.11.043
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Previous work in our group has shown that hydrophobic modification of chitosan and Nafion (R) membranes can be used to alter the transport properties of chemically modified electrodes. In this paper, we employ the same hydrophobically modified chitosan and Nafion (R) membranes to form and characterize enzyme modified electrodes for biofuel cell applications. This paper details the voltammetric characterization of the electrochemical flux at alcohol dehydrogenase, formate dehydrogenase, lactic dehydrogenase, glucose dehydrogenase, and formaldehyde dehydrogenase modified glassy carbon electrodes, where the enzymes were immobilized in both hydrophobically modified Nafion (R) and chitosan membranes where the degree of hydrophobic modification was systematically altered. The results conclude that the electrochemical flux is a function of both the transport and extraction properties of the membrane, as well as the size and catalytic activity of the enzyme. Finally, this paper details the first evidence that hydrophobically modified chitosan can be used at the anode of a biofuel cell. (C) 2007 Elsevier B.V. All rights reserved.
引用
收藏
页码:81 / 88
页数:8
相关论文
共 24 条
[1]   Development of alcohol/O2 biofuel cells using salt-extracted tetrabutylammonium bromide/Nafion membranes to immobilize dehydrogenase enzymes [J].
Akers, NL ;
Moore, CM ;
Minteer, SD .
ELECTROCHIMICA ACTA, 2005, 50 (12) :2521-2525
[2]   A laccase-glucose oxidase biofuel cell prototype operating in a physiological buffer [J].
Barriere, Frederic ;
Kavanagh, Paul ;
Leech, Donal .
ELECTROCHIMICA ACTA, 2006, 51 (24) :5187-5192
[3]   Enzymatic biofuel cells for Implantable and microscale devices [J].
Barton, SC ;
Gallaway, J ;
Atanassov, P .
CHEMICAL REVIEWS, 2004, 104 (10) :4867-4886
[4]   STUDY OF ELECTROCHEMICAL OXIDATION OF REDUCED NICOTINAMIDE ADENINE-DINUCLEOTIDE [J].
BLAEDEL, WJ ;
JENKINS, RA .
ANALYTICAL CHEMISTRY, 1975, 47 (08) :1337-1343
[5]  
CRUMBLISS AL, 1994, NEW J CHEM, V18, P327
[6]  
Fernández-Lorente G, 2000, METH TOOLS BIOSCI ME, P36
[7]   AMPEROMETRIC BIOSENSORS BASED ON AN APPARENT DIRECT ELECTRON-TRANSFER BETWEEN ELECTRODES AND IMMOBILIZED PEROXIDASES - PLENARY LECTURE [J].
GORTON, L ;
JONSSONPETTERSSON, G ;
CSOREGI, E ;
JOHANSSON, K ;
DOMINGUEZ, E ;
MARKOVARGA, G .
ANALYST, 1992, 117 (08) :1235-1241
[8]   Glucose oxidase anode for biofuel cell based on direct electron transfer [J].
Ivnitski, Dmitri ;
Branch, Brittany ;
Atanassov, Plamen ;
Apblett, Christopher .
ELECTROCHEMISTRY COMMUNICATIONS, 2006, 8 (08) :1204-1210
[9]  
KAMRUL IM, 2004, CHEM SENSES, V20, P744
[10]   NEW AMPEROMETRIC DEHYDROGENASE ELECTRODES BASED ON ELECTROCATALYTIC NADH-OXIDATION AT POLY(METHYLENE BLUE)-MODIFIED ELECTRODES [J].
KARYAKIN, AA ;
KARYAKINA, EE ;
SCHUHMANN, W ;
SCHMIDT, HL ;
VARFOLOMEYEV, SD .
ELECTROANALYSIS, 1994, 6 (10) :821-829