| Literature DB >> 28334627 |
Fangyuan Zhao1, Felipe Conzuelo1, Volker Hartmann2, Huaiguang Li3, Stefanie Stapf3, Marc M Nowaczyk2, Matthias Rögner2, Nicolas Plumeré3, Wolfgang Lubitz4, Wolfgang Schuhmann5.
Abstract
The development of a versatile microbiosensor for hydrogen detection is reported. Carbon-based microelectrodes were modified with a [NiFe]-hydrogenase embedded in a viologen-modified redox hydrogel for the fabrication of a sensitive hydrogen biosensor By integrating the microbiosensor in a scanning photoelectrochemical microscope, it was capable of serving simultaneously as local light source to initiate photo(bio)electrochemical reactions while acting as sensitive biosensor for the detection of hydrogen. A hydrogen evolution biocatalyst based on photosystem 1-platinum nanoparticle biocomplexes embedded into a specifically designed redox polymer was used as a model for proving the capability of the developed hydrogen biosensor for the detection of hydrogen upon localized illumination. The versatility and sensitivity of the proposed microbiosensor as probe tip allows simplification of the set-up used for the evaluation of complex electrochemical processes and the rapid investigation of local photoelectrocatalytic activity of biocatalysts towards light-induced hydrogen evolution.Entities:
Keywords: Hydrogen biosensor; Hydrogenase; Oxygen-protection shield; PS1-Pt; SECM; Viologen-modified redox polymer
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Year: 2017 PMID: 28334627 DOI: 10.1016/j.bios.2017.03.037
Source DB: PubMed Journal: Biosens Bioelectron ISSN: 0956-5663 Impact factor: 10.618