Enhanced photoelectrochemical biosensing performance from rutile nanorod/anatase nanowire junction array
Enhanced photoelectrochemical biosensing performance from rutile nanorod/anatase nanowire junction array
复制标题
金红石纳米棒/锐钛矿纳米线结阵列增强光电化学生物传感性能
DOI:
10.1016/j.apsusc.2018.07.088
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发表时间:
2018
影响因子:
6.7
通讯作者:
Wu Qiang
中科院分区:
文献类型:
--
作者:
Yan Bingdong;Zhuang Yi;Jiang Yulin;Xu Wei;Chen Yongjun;Tu Jinchun;Wang Xiaohong;Wu Qiang
In this work, a novel enzymatic glucose photoelectrochemical biosensor was successfully fabricated based on rutile/anatase TiO2(R/A-TiO2) heterostructure which was composed of anatase nanowires and rutile nanorods. Compared to a rutile nanorod electrode, an obvious enhanced photocurrent was observed on R/A-TiO2electrode in photoelectrochemical test. Excellent photoeletrochemical performance was obtained due to these follow points: higher optical absorptivity for the larger surface area, better separation of the photogenerated carriers related to the specific R/A-TiO2heterostructure and faster electrical transmission stemmed from the unique conductive structure. This R/A-TiO2heterostructure array was applied to glucose detection by loading glucose oxidase on R/A-TiO2electrode. A remarkable performance with a 5.71 μA mM−1cm−2sensitivity, 1–20 mM linear range and a 0.019 mM glucose detection limit (S/N = 3) were obtained in the glucose detection.