Carbon nanospheres bridging in perovskite quantum dots/BiOBr: An efficient heterojunction for high-performance photoelectrochemical sensing of deoxynivalenol

文献类型: 外文期刊

第一作者: Chen, Miao-Miao

作者: Chen, Miao-Miao;Liu, Yuan;Jiang, Jun;Zhang, Qi;Li, Peiwu;Tang, Xiaoqian;Chen, Miao-Miao;Liu, Yuan;Jiang, Jun;Zhang, Qi;Li, Peiwu;Tang, Xiaoqian;Chen, Miao-Miao;Liu, Yuan;Jiang, Jun;Zhang, Qi;Li, Peiwu;Tang, Xiaoqian;Chen, Miao-Miao;Liu, Yuan;Jiang, Jun;Zhang, Qi;Li, Peiwu;Tang, Xiaoqian;Jiang, Jun;Zhang, Qi;Li, Peiwu;Tang, Xiaoqian;Zhang, Qi;Li, Peiwu;Tang, Xiaoqian;Zhang, Qi;Li, Peiwu;Tang, Xiaoqian;Zhao, Shuaiqi;Tang, Xiaoqian

作者机构:

关键词: Carbon nanospheres; Perovskite; Heterojunctions; Photoelectrochemical immunosensors; Deoxynivalenol

期刊名称:CARBON ( 影响因子:10.9; 五年影响因子:9.4 )

ISSN: 0008-6223

年卷期: 2024 年 221 卷

页码:

收录情况: SCI

摘要: Semiconductor-conductor-semiconductor (SCS) heterojunctions with cascade-type energy-level configurations hold great promise in improving the photoelectric conversion efficiency for photoelectrochemical (PEC) sensing. However, the existing SCS heterostructures were restricted by the incidental Coulomb blockade effect, high cost and the complicated preparation procedure. Hence, we induced methylamine bromide perovskite quantum dotsdecorated carbon nanospheres (PQDs@CNSs) ensemble to boost the photoelectric activity of bismuth oxybromide (BiOBr) by creating indirect SCS Z-scheme heterojunctions. PQDs@CNSs@BiOBr ternary composites demonstrated substantially higher photocurrent response compared to individual PQDs@CNSs or BiOBr. Moreover, the stability of PQDs materials was greatly promoted through this design. Further combing with immune recognition, highly selective and ultra-sensitive quantitative detection of a kind of mycotoxin, deoxynivalenol (DON) as a food contaminant, was realized. The detection of limit was calculated to be 34.3 pg/mL. Satisfactory recoveries of DON in corn, as well as wheat samples, indicated the practicability of the as-proposed PEC sensors. This facile approach may provide new ideas for the preparation of carbon-based photoactivity semiconductors with desired PEC sensing performance in food safety field.

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