Polymer-Based Conductive Nanocomposites for the Development of Bioanodes Using Membrane-Bound Enzyme Systems of Bacteria Gluconobacter oxydans in Biofuel Cells

被引:1
|
作者
Fedina, Veronika [1 ]
Lavrova, Daria [1 ,2 ]
Dyachkova, Tatyana [3 ]
Pasko, Anastasia [3 ]
Zvonarev, Anton [4 ]
Panfilov, Victor [5 ]
Ponamoreva, Olga [2 ]
Alferov, Sergey [1 ,2 ]
机构
[1] Tula State Univ, Lab Ecol & Med Biotechnol, Friedrich Engels St 157, Tula 300012, Russia
[2] Tula State Univ, Biotechnol Dept, Pr Lenina 92, Tula 300012, Russia
[3] Tambov State Tech Univ, Dept Technol & Methods Nanoprod Mfg, 106-5,Bldg 2,Sovetskaya Str, Tambov 392000, Russia
[4] Russian Acad Sci, GK Skryabin Inst Biochem & Physiol Microorganisms, Fed Res Ctr, Pushchino Sci Ctr Biol Res, Pushchino 142290, Russia
[5] Mendeleev Univ Chem Technol Russia, Dept Biotechnol, Miusskaya Sq 9, Moscow 125047, Russia
关键词
electroactive polymer composites; chitosan; poly(vinyl alcohol); bovine serum albumin; membrane fraction of bacteria Gluconobacter oxydans; carbon nanotubes; immobilization; WALLED CARBON NANOTUBES; MODIFIED NANODIAMONDS; CHITOSAN; SURFACE; SENSOR;
D O I
10.3390/polym15051296
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The development of biofuel cells (BFCs) currently has high potential since these devices can be used as alternative energy sources. This work studies promising materials for biomaterial immobilization in bioelectrochemical devices based on a comparative analysis of the energy characteristics (generated potential, internal resistance, power) of biofuel cells. Bioanodes are formed by the immobilization of membrane-bound enzyme systems of Gluconobacter oxydans VKM V-1280 bacteria containing pyrroloquinolinquinone-dependent dehydrogenases into hydrogels of polymer-based composites with carbon nanotubes. Natural and synthetic polymers are used as matrices, and multi-walled carbon nanotubes oxidized in hydrogen peroxide vapor (MWCNTox) are used as fillers. The intensity ratio of two characteristic peaks associated with the presence of atoms C in the sp(3) and sp(2) hybridization for the pristine and oxidized materials is 0.933 and 0.766, respectively. This proves a reduced degree of MWCNTox defectiveness compared to the pristine nanotubes. MWCNTox in the bioanode composites significantly improve the energy characteristics of the BFCs. Chitosan hydrogel in composition with MWCNTox is the most promising material for biocatalyst immobilization for the development of bioelectrochemical systems. The maximum power density was 1.39 x 10(-5) W/mm(2), which is 2 times higher than the power of BFCs based on other polymer nanocomposites.
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页数:20
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