首页> 外文期刊>International journal of hydrogen energy >Visible light-operated saccharide-O_2 biofuel cell based on the photosensitization of chlorophyll derivative on TiO_2 film
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Visible light-operated saccharide-O_2 biofuel cell based on the photosensitization of chlorophyll derivative on TiO_2 film

机译:基于叶绿素衍生物在TiO_2薄膜上的光敏化的可见光糖-O_2生物燃料电池

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摘要

The visible light-operated saccharide-O_2 biofuel cell consisting of zinc chlorin-e_6 (ZnChl-e_6) adsorbed on nanocrystalline TiO_2 layer coated onto optical transparent conductive glass electrode (OTE) as an anode, platinum-coated OTE as a cathode, and the fuel solution containing sucrose as a saccharide, invertase, glucose dehydrogenase (GDH) and NAD~+ is studied as a new type biofuel cell. The short-circuit photocurrent (I_(SC)) and the open-circuit photovoltage (V_(OC)) of this cell are 9.0 μA cm~(-2) and 415 mV, respectively. The peaks in the photocurrent action spectrum of this cell are observed at 400 and 800 nm and the incident photon-to-current efficiency (IPCE) values at 400 and 800nm are estimated to be ca. 17.3% and 10.6%. Thus, a new type of visible light-operated saccharide-O_2 biofuel cell with the visible and near IR photosensitization of ZnChl-e_6 molecules on nanocrystalline TiO_2 film electrode is accomplished.
机译:可见光操作的糖类-O_2生物燃料电池,由吸附在纳米碳TiO_2层上的二氢卟吩锌e_6(ZnChl-e_6)吸附,该纳米TiO_2涂层涂覆在作为阳极的光学透明导电玻璃电极(OTE)上,铂涂覆的OTE作为阴极,以及以蔗糖为糖,蔗糖酶,葡萄糖脱氢酶(GDH)和NAD〜+为燃料的新型生物燃料电池得到了研究。该电池的短路光电流(I_(SC))和开路光电压(V_(OC))分别为9.0μAcm〜(-2)和415 mV。在400和800 nm处观察到该电池的光电流作用谱中的峰值,并且在400和800 nm处的入射光子电流效率(IPCE)值估计为。 17.3%和10.6%。因此,完成了一种新型的可见光操作的糖-O_2生物燃料电池,其在纳米晶TiO_2薄膜电极上具有ZnChl-e_6分子的可见光和近红外光敏化。

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