材料科学
表面等离子共振
纳米复合材料
等离子体子
纳米技术
表面等离子体子
薄膜
光电子学
局域表面等离子体子
共振(粒子物理)
纳米颗粒
物理
粒子物理学
作者
Jingrui Wu,Fengbo Yan,Jianqiao Zhao,Li Qian,Tong‐Huai Cheng,Jiejun Su,Lei Bi,Yu Huang,Weipeng Wang,Zhengjun Zhang,Feng Luo,Shuai Ning
标识
DOI:10.1002/adfm.202411358
摘要
Abstract While the physical principles for regulating localized surface plasmon resonance (LSPR) are well established, dynamically tuning the LSPR in a given material post synthesis remains challenging. Herein, this study demonstrates a strategy for dynamically tuning the LSPR of Au nanostructures by selectively altering the dielectric environment. Au is integrated with an electrochemically gatable oxide, i.e., SrCoO x (SCO), into vertically aligned nanocomposite thin films via a self‐assembly growth mechanism, where Au develops into nanopillars embedded in the SCO matrix. By selectively controlling the tri‐state phase transitions of SCO matrix via varying the bias voltage polarity in ionic liquid gating (ILG), the LSPR behavior of Au nanopillars can be dynamically tuned. Specifically, gating with a negative bias fully suppresses the LSPR, while a positive bias leads to a continuous blueshift of the LSPR wavelength upon increasing the ILG duration. This work not only opens new directions for the dynamic control of LSPR of noble metal nanostructures, but also offers insight to the voltage control of multifunctionalities via structural and physical intercoupling between different phases in self‐assembled nanocomposites.
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