材料科学
纳米技术
制作
拉曼散射
电极
纳米晶
导电体
烧结
光电子学
拉曼光谱
纳米材料
柔性电子器件
透明导电膜
薄板电阻
金属
作者
Kai Liu,Qingbo Wa,Yeming He,Zezhou Liang,Yan He,Zemin He,Wenyuan Duan,Yongming Zhang,Duqiang Xin,Jianxin Guo,Z. Liu,Yangfei Gao,Chuanbo Gao
标识
DOI:10.1002/adfm.202529776
摘要
ABSTRACT Ag nanoplates hold great promise in flexible electronics, surface‐enhanced Raman scattering (SERS), and sensing due to their unique physicochemical properties and 2D structural benefits. Thickness plays a crucial role in their optical performance, flexibility, and sintering behavior. However, the controlled synthesis of ultrathin Ag nanoplates remains difficult because traditional methods lack mechanisms to effectively limit growth along the thickness, often resulting in thicker nanoplates. In this work, we introduce a new nitrite‐mediated seeded growth technique for the precise synthesis of ultrathin Ag nanoplates. The nitrite prevents self‐nucleation, enables high selectivity for Ag{111} facets, and restricts crystal growth along the thickness. The resulting Ag nanoplates have a thickness of ∼2 nm, high purity, and tunable sizes. Notably, their ultrathin structure facilitates low‐temperature welding of Ag nanowires, reducing resistance in conductive networks. This method provides a versatile way to produce high‐quality, ultrathin 2D metal nanocrystals and opens new avenues for advanced materials in flexible optoelectronics and wearable devices.
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