研究目的
To improve the detection performances of SERS by venturing beyond hotspot engineering, focusing on emerging material design strategies to capture and confine analytes near SERS-active surfaces and exploring various promising hybrid SERS platforms.
研究成果
The review concludes that integrating analyte manipulation strategies and hybrid materials with well-designed hotspots can significantly enhance SERS performance, overcoming limitations of traditional hotspot engineering. Future research directions include the development of superoleophobic and superomniphobic SERS platforms, advanced statistical tools for molecular recognition, and the large-scale fabrication of hybrid SERS ensembles.
研究不足
Challenges include designing efficient 3D plasmonic architectures, detecting oil-soluble molecules, deciphering complex molecular fingerprints in biological matrices, and the large-scale fabrication of hybrid SERS platforms with high reproducibility.