研究目的
To fabricate macroscopic and in-plane multiplex arrays of plasmonic nanoparticles with well-defined particle size or composition allocation for enhanced photocurrent response and broadened LSPR enhancement.
研究成果
The presented approach enables the fabrication of macroscopic and in-plane multiplex arrays of plasmonic nanoparticles with controlled size or composition, leading to synergistic enhanced photocurrent response and broadened LSPR enhancement. This method is highly repeatable and feasible for various applications, including sensing, solar energy conversion, and optical processing.
研究不足
The study focuses on Au and Au@Ag nanoparticles, and the method's applicability to other metal nanoparticles or more complex compositions is not explored. The temperature control around LCST is crucial for the growth process, which may limit the scalability or reproducibility under varying conditions.