On-chip liquid sensing using mid-IR plasmonics

B. Hinkov, M. David, G. Strasser, B. Schwarz, B. Lendl
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Abstract

The investigation of molecules in the mid-IR spectral range has revolutionized our understanding in many fields such as atmospheric chemistry and environmental sensing for climate research or disease monitoring in medical diagnosis. While the mid-IR analysis of gas-samples is already a mature discipline, the spectroscopy of liquids is still in its infancy. However, it is a rapidly developing field of research, set to fundamentally change our knowledge of dynamical processes of molecules in liquid-phase. In this field, mid-IR plasmonics has emerged as breakthrough concept for miniaturization, enabling highly-sensitive and -selective liquid measurement tools. In this review, we give an overview over current trends and recent developments in the field of mid-IR spectroscopy of molecules in liquid phase. Special attention is given to plasmon-enhanced concepts that allow measurements in highly compact sensor schemes. Nowadays, they reach full monolithic integration, including laser, interaction section and detector on the same chip, demonstrating unprecedented operation in situ and real-time analysis of chemical processes.
基于中红外等离子体的片上液体传感
对中红外光谱范围内分子的研究彻底改变了我们在许多领域的理解,如用于气候研究的大气化学和环境传感或医学诊断中的疾病监测。虽然气体样品的中红外分析已经是一门成熟的学科,但液体光谱学仍处于初级阶段。然而,这是一个快速发展的研究领域,将从根本上改变我们对液相分子动力学过程的认识。在这个领域,中红外等离子体已经成为小型化的突破性概念,使高灵敏度和选择性的液体测量工具成为可能。在这篇综述中,我们概述了液相中分子的中红外光谱领域的当前趋势和最新发展。特别关注等离子体增强概念,该概念允许在高度紧凑的传感器方案中进行测量。如今,它们实现了全单片集成,包括激光器、交互部分和检测器在同一芯片上,展示了前所未有的原位操作和化学过程的实时分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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