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Micro-nano textured graphene-based bionic pH sensor and preparation method therefor

机译:微纳米质感石墨烯基仿生pH传感器及其制备方法

摘要

A micro-nano textured graphene-based bionic pH sensor and a preparation method therefor. The micro-nano textured graphene-based bionic pH sensor comprises a substrate (1), a working electrode (4), a reference electrode (5), a copper contact A (6), a copper contact B (7), an inner lead A (8), and an inner lead B (9). A groove A (2) and a groove B (3) are formed in the substrate (1). The working electrode (4) is located in the groove A (2), and the reference electrode (5) is located in the groove B (3). The bottom of the working electrode (4) is connected to the inner lead A (8) by means of the copper contact A (6). The top of the reference electrode (5) is connected to the inner lead B (9) by means of the copper contact B (7). The working electrode (4) comprises a graphene group A (401) and a sensitive electrode material layer (402). The sensitive electrode material layer (402) is located on the upper layer of the graphene group A (401). The reference electrode (5) comprises a graphene group B (501) and a metal material silver layer (502). The metal material silver layer (502) is located on the lower layer of the graphene group B (501). Microgrooves or micro pits are formed in the upper surface of the sensitive electrode material layer (402) and the lower surface of the metal material silver layer (502). The pH sensor can fast adsorb water in soil and a culture medium and then adsorb hydrogen ions, and pH in-situ measurement of the soil, the culture medium and other heterogeneous systems is implemented.
机译:基于微纳米织构的石墨烯的仿生pH传感器及其制备方法。基于微纳米纹理石墨烯的仿生pH传感器包括基板( 1 ),工作电极( 4 ),参比电极( 5 >),铜触点A( 6 ),铜触点B( 7 ),内部引线A( 8 )和一个内部引线B( 9 )。在基板( 1 )中形成凹槽A( 2 )和凹槽B( 3 )。工作电极( 4 )位于凹槽A( 2 )中,参考电极( 5 )位于凹槽B中( 3 )。工作电极的底部( 4 )通过铜触点A( 6 )连接到内部引线A( 8 ) 。参比电极( 5 )的顶部通过铜触点B( 7 )连接到内部引线B( 9 ) 。工作电极( 4 )包括石墨烯基团A( 401 )和敏感电极材料层( 402 )。敏感电极材料层( 402 )位于石墨烯基团A( 401 )的上层。参比电极( 5 )包括石墨烯基团B( 501 )和金属材料银层( 502 )。金属材料银层( 502 )位于石墨烯基团B( 501 )的下层。在敏感电极材料层( 402 )的上表面和金属材料银层( 502 )的下表面上形成微槽或微坑。 pH传感器可以快速吸附土壤和培养基中的水,然后吸附氢离子,从而可以对土壤,培养基和其他异质系统进行pH值现场测量。

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