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Vertical Gold Nanowires Stretchable Electrochemical Electrodes.
Zhai, Qingfeng; Wang, Yan; Gong, Shu; Ling, Yunzhi; Yap, Lim Wei; Liu, Yiyi; Wang, Joseph; Simon, George P; Cheng, Wenlong.
Afiliação
  • Zhai Q; Department of Chemical Engineering , Monash University , Clayton , Victoria 3800 , Australia.
  • Wang Y; New Horizon Research Centre , Monash University , Clayton , Victoria 3800 , Australia.
  • Gong S; Department of Chemical Engineering , Monash University , Clayton , Victoria 3800 , Australia.
  • Ling Y; New Horizon Research Centre , Monash University , Clayton , Victoria 3800 , Australia.
  • Yap LW; Department of Chemical Engineering , Monash University , Clayton , Victoria 3800 , Australia.
  • Liu Y; New Horizon Research Centre , Monash University , Clayton , Victoria 3800 , Australia.
  • Wang J; Department of Chemical Engineering , Monash University , Clayton , Victoria 3800 , Australia.
  • Simon GP; New Horizon Research Centre , Monash University , Clayton , Victoria 3800 , Australia.
  • Cheng W; Department of Chemical Engineering , Monash University , Clayton , Victoria 3800 , Australia.
Anal Chem ; 90(22): 13498-13505, 2018 11 20.
Article em En | MEDLINE | ID: mdl-30350612
Conventional electrodes produced from gold or glassy carbon are outstanding electrochemical platforms for biosensing applications due to their chemical inertness and wide electrochemical window, but are intrinsically rigid and planar in nature. Hence, it is challenging to seamlessly integrate them with soft and curvilinear biological tissues for real-time wearable or implantable electronics. In this work, we demonstrate that vertically gold nanowires (v-AuNWs) possess an enokitake-like structure, with the nanoparticle (head) on one side and nanowires (tail) on the opposite side of the structure, and can serve as intrinsically stretchable, electrochemical electrodes due to the stronger nanowire-elastomer bonding forces preventing from interfacial delamination under strains. The exposed head side of the electrode comprising v-AuNWs can achieve a detection limit for H2O2 of 80 µM, with a linear range of 0.2-10.4 mM at 20% strain, with a reasonably high sensitivity using chronoamperometry. This excellent electrochemical performance in the elongated state, in conjunction with low-cost wet-chemistry fabrication, demonstrates that v-AuNWs electrodes may become a next-generation sensing platform for conformally integrated, in vivo biodiagnostics.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Eletrodos / Nanofios / Técnicas Eletroquímicas / Ouro Idioma: En Revista: Anal Chem Ano de publicação: 2018 Tipo de documento: Article País de afiliação: Austrália

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Eletrodos / Nanofios / Técnicas Eletroquímicas / Ouro Idioma: En Revista: Anal Chem Ano de publicação: 2018 Tipo de documento: Article País de afiliação: Austrália