作者: Zhang Caiyun , Dong Chuan , Fan Zhenzhen , Fan Lifang , Shuang Shaomin
DOI:
关键词: Vacuum furnace 、 Composite material 、 Dispersant 、 Bisphenol 、 Bisphenol A 、 Titanate 、 Hydrothermal circulation 、 Nanorod 、 Electrical conductor 、 Materials science
摘要: The invention belongs to the technical field of photoelectrochemical analysis, and relates a zinc phthalocyanine/TiO2 nanorod composite material-based sensor. photoelectricsensor constructed based on phthalocyanine sensitized TiO2 nanorods can be used in rapid sensitive detection concentration bisphenol A order solve problems inconvenient high cost existing methods for detecting A. sensor is by following steps: (1) directly synthesizing FTO conductive glass through conventional one-step hydrothermal technology with tetrabutyl titanate as titanium source saturated sodium chloride solution dispersant; (2) taking 1 mL an N,N-dimethylformamide phthalocyanine, dispensing surface obtained nanorod/FTO glass,and drying vacuum oven at 60 DEG C completely deposit dye obtain zinc-phthalocyanine/TiO2