等离子体子
胶体金
纳米技术
材料科学
润湿
纳米晶
表面等离子体子
接触角
纳米结构
生物分子
纳米颗粒
表面工程
表面等离子共振
光电子学
复合材料
作者
Tingting Zhai,Haoran Zheng,Weina Fang,Zhaoshuai Gao,Shiping Song,Xiaolei Zuo,Qian Li,Lihua Wang,Jiang Li,Jiye Shi,Xiaoguo Liu,Yang Tian,Jianlei Shen,Chunhai Fan
标识
DOI:10.1002/anie.202210377
摘要
Controlling the deposition and diffusion of adsorbed atoms (adatoms) on the surface of a solid material is vital for engineering the shape and function of nanocrystals. Here, we report the use of single-stranded DNA (oligo-adenine, oligo-A) to encode the wettability of gold seeds by homogeneous gold adatoms to synthesize highly tunable plasmonic nanostructures. We find that the oligo-A attachment transforms the nanocrystal growth mode from the classical Frank-van der Merwe to the Volmer-Weber island growth. Finely tuning the oligo-A density can continuously change the gold-gold contact angle (θ) from 35.1±3.6° to 125.3±8.0°. We further demonstrate the versatility of this strategy for engineering nanoparticles with different curvature and dimensions. With this unconventional growth mode, we synthesize a sub-nanometer plasmonic cavity with a geometrical singularity when θ>90°. Superfocusing of light in this nanocavity produces a near-infrared intraparticle plasmonic coupling, which paves the way to surface engineering of single-particle plasmonic devices.
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