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Preparation of ultrathin defect-free graphene sheets from graphite via fluidic delamination for solid-contact ion-to-electron transducers in potentiometric sensors
- Park, Hong Jun;
- Jeong, Jae-Min;
- Yoon, Jo Hee;
- Son, Seon Gyu;
- Kim, Yeong Kyun;
- ... Choi, Bong Gill;
- 외 2명
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30초록
In this study, ultrathin and defect-free graphene (Gr) sheets were prepared through a fluid dynamics-induced shear exfoliation method using graphite. The high hydrophobicity and surface area of Gr make it attractive as a solid-contact ion-to-electron transducer for potentiometric K+ sensors, in which the electrodes are fabricated through a screen-printing process. The electrochemical characterization demonstrates that Gr solid contact results in a high double-layer capacitance, potential stability, and strong resistance against water layer, gases, and light. The Gr-based K+ sensors showed a Nernstian slope of 53.53 mV/log[K+] within a linear concentration range of 10(-1)-10(-4) M, a low detection limit of 10(-4.28) M, a fast response time of similar to 8 s, good repeatability, and excellent long-term stability. Moreover, the Gr-based K+ sensors provided accurate ion concentrations in actual samples of human sweat and sports drinks. (C) 2019 Elsevier Inc. All rights reserved.
키워드
- 제목
- Preparation of ultrathin defect-free graphene sheets from graphite via fluidic delamination for solid-contact ion-to-electron transducers in potentiometric sensors
- 저자
- Park, Hong Jun; Jeong, Jae-Min; Yoon, Jo Hee; Son, Seon Gyu; Kim, Yeong Kyun; Kim, Do Hyun; Lee, Kyoung G.; Choi, Bong Gill
- 발행일
- 2020-02-15
- 유형
- Article
- 권
- 560
- 페이지
- 817 ~ 824