石墨烯
材料科学
纳米线
电极
焦耳加热
芯(光纤)
纳米技术
壳体(结构)
光电子学
复合材料
化学
物理化学
作者
Woojin Lim,Jungwoo Huh,Bhavana Joshi,Edmund Samuel,Ali Aldalbahi,Govindasami Periyasami,Hae‐Seok Lee,Sam S. Yoon
标识
DOI:10.1016/j.coco.2025.102425
摘要
Ag nanomaterials are typically used in solar-cell electrodes, medical imaging optical devices, touchscreen sensors, air and water purification devices, light-emitting diodes, catalysts, conductive adhesives , and wearable heaters. Although relatively bulky and expensive, Ag paste is widely used as an electrode material in these applications. The lightweight Ag–Ni core–shell nanowires (AgNW–Ni) developed in this study exhibit excellent thermal and electrical properties, even at extremely low mass loadings, because of their excellent electrical network resembling a spider web . Because Ni possesses a higher melting temperature than Ag, AgNWs were electroplated with Ni to protect Ag from disintegration under high Joule heating conditions. Then, AgNW–Ni electrodes were installed at both ends of a flexible carbon nanotube/graphene heater. The AgNW–Ni and Ag-paste electrodes with thicknesses of 1 and 35 μm disintegrated at T max = 303 and 286 °C, respectively, under high Joule heating. Owing to its lower thickness, AgNW–Ni electrode synthesis consumes less material than synthesizing Ag-paste electrodes; thus, AgNW–Ni is relatively cost-effective. In addition to being used in electrodes, AgNW–Ni can be used as an active heating material. The patternability of the AgNW–Ni films for heaters of various shapes was also investigated in this study. • The lightweight Ag–Ni core–shell nanowires (AgNW–Ni) exhibited excellent thermal and electrical properties. • The AgNW-Ni electrode network resembled that of a spider web. • AgNWs were electroplated with Ni to protect Ag from disintegration under high Joule heating conditions. • Owing to lower thickness, AgNW–Ni electrode synthesis requires lower material consumption than Ag-paste electrode synthesis.
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