Buckley Kevin, Goodship Allen, Macleod Neil A, Parker Anthony W, Matousek Pavel
Central Laser Facility, Science and Technology Facilities Council, Rutherford Appleton Laboratory, Harwell Science and Innovation Campus, Didcot, Oxfordshire, OX11 0QX, United Kingdom.
Anal Chem. 2008 Aug 1;80(15):6006-9. doi: 10.1021/ac800700w. Epub 2008 Jun 21.
We demonstrate experimentally, for the first time, the feasibility of passively enhancing fluorescence and Raman signals from diffusely scattering media in a conventional backscattering collection geometry. The method employs transmission of the collimated excitation laser beam through a "unidirectional" dielectric mirror placed directly in front of the sample. This permits laser light that escapes from the sample surface to be reflected back into the sample where it can be more usefully employed in generating Raman and fluorescence signals. This leads to improved Raman signal, higher signal-to-noise ratio, and shorter acquisition times. Feasibility studies performed on standard pharmaceutical tablets and on sheets of Teflon, using a single enhancing element, demonstrate signal enhancement factors of 6 (fluorescence) and 3 (Raman). Potential applications of this simple device include improving quality control of pharmaceutical products, disease diagnosis of biological tissue, forensics, and security screening.
我们首次通过实验证明了在传统的背散射收集几何结构中被动增强来自漫散射介质的荧光和拉曼信号的可行性。该方法采用准直激发激光束透过直接放置在样品前方的“单向”介质镜进行传输。这使得从样品表面逸出的激光能够被反射回样品中,在那里它可以更有效地用于产生拉曼和荧光信号。这导致拉曼信号得到改善、信噪比提高以及采集时间缩短。使用单个增强元件对标准药片片剂和聚四氟乙烯片进行的可行性研究表明,荧光信号增强因子为6,拉曼信号增强因子为3。这种简单装置的潜在应用包括改善药品质量控制、生物组织疾病诊断、法医学以及安全筛查。