Opt Lett. 2022 Feb 1;47(3):670-673. doi: 10.1364/OL.447995.
We report an effective strategy to promote the near-infrared surface-enhanced Raman scattering spectroscopy (NIR-SERS) activity by boosting the photon-induced charge transfer (PICT) efficiency at cryogenic temperature. Based on as-prepared Au/Ag nano-urchins (NUs) with abundant surface defects, the extremely low temperature (77 K) can significantly weaken the metallic lattice vibration and reduce the recombination of thermal phonons and photoexcited electrons, then accelerate the migration of energetic electrons. It enables the NIR-SERS detection limit of dye molecules to be achieved at 10 M, which is nearly three orders of magnitude better than that at room temperature. The present work provides a new, to the best of our knowledge, approach for ultra-trace NIR-SERS bioanalysis.
我们报告了一种通过提高低温下光致电荷转移(PICT)效率来增强近红外表面增强拉曼散射光谱(NIR-SERS)活性的有效策略。基于具有丰富表面缺陷的预制 Au/Ag 纳米刺猬(NUs),极低温度(77 K)可显著减弱金属晶格振动并减少热声子和光激发电子的复合,从而加速高能电子的迁移。这使得染料分子的 NIR-SERS 检测极限达到 10 M,比室温下的检测极限提高了近三个数量级。本工作为痕量 NIR-SERS 生物分析提供了一种新的、据我们所知的方法。