| Literature DB >> 27285849 |
Habeom Lee1, Sukjoon Hong2, Jinhwan Lee1, Young Duk Suh1, Jinhyeong Kwon1, Hyunjin Moon1, Hyeonseok Kim1, Junyeob Yeo3, Seung Hwan Ko1.
Abstract
Stretchable and transparent electronics have steadily attracted huge attention in wearable devices. Although Ag nanowire is the one of the most promising candidates for transparent and stretchable electronics, its electrochemical instability has forbidden its application to the development of electrochemical energy devices such as supercapacitors. Here, we introduce a highly stretchable and transparent supercapacitor based on electrochemically stable Ag-Au core-shell nanowire percolation network electrode. We developed a simple solution process to synthesize the Ag-Au core-shell nanowire with excellent electrical conductivity as well as greatly enhanced chemical and electrochemical stabilities compared to pristine Ag nanowire. The proposed core-shell nanowire-based supercapacitor still possesses fine optical transmittance and outstanding mechanical stability up to 60% strain. The Ag-Au core-shell nanowire can be a strong candidate for future wearable electrochemical energy devices.Entities:
Keywords: Ag−Au core−shell nanowire; nanowire percolation network; stretchable and transparent supercapacitor; stretchable electronics; transparent energy device; wearable electronics
Year: 2016 PMID: 27285849 DOI: 10.1021/acsami.6b04364
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229