Mid-Infrared Dispersion Spectroscopy as a Tool for Monitoring Time-Resolved Chemical Reactions on the Examples of Enzyme Kinetics and Mutarotation of Sugars.

IF 2.2 3区 化学 Q2 INSTRUMENTS & INSTRUMENTATION
Applied Spectroscopy Pub Date : 2024-09-01 Epub Date: 2024-07-25 DOI:10.1177/00037028241258109
Alicja Dabrowska, Andreas Schwaighofer, Bernhard Lendl
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引用次数: 0

Abstract

Ongoing technological advancements in the field of mid-infrared (MIR) spectroscopy continuously yield novel sensing modalities, offering capabilities beyond traditional techniques like Fourier transform infrared spectroscopy (FT-IR). One such advancement is MIR dispersion spectroscopy, utilizing a tunable quantum cascade laser and Mach-Zehnder interferometer for liquid-phase analysis. Our study assesses the performance of a custom MIR dispersion spectrometer at its current development stage, benchmarks its performance against FT-IR, and validates its potential for time-resolved chemical reaction monitoring. Unlike conventional methods of IR spectroscopy measuring molecular absorptions using intensity attenuation, our method detects refractive index changes (phase shifts) down to a level of 6.1 × 10-7 refractive index units (RIU). This results in 1.5 times better sensitivity with a sevenfold increase in analytical path length, yielding heightened robustness for the analysis of liquids compared to FT-IR. As a case study, we monitor the catalytic activity of invertase with sucrose, observing the formation of resultant monosaccharides and their progression toward thermodynamic equilibrium. Anomalous refractive index spectra of reaction mixtures, with substrate concentrations ranging from 2.5 to 25 g/L, are recorded, and analyzed at various temperatures, yielding Michaelis-Menten kinetics findings comparable to the literature. Additionally, the first-time application of two-dimensional correlation spectroscopy on the recorded dynamic dispersion spectra correctly identifies the mutarotation of reaction products (glucose and fructose). The results demonstrate high precision and sensitivity in investigating complex time-dependent chemical reactions via broadband refractive index changes.

EXPRESS:中红外色散光谱法作为一种监测时间分辨化学反应的工具,以酶动力学和糖的变构为例。
中红外(MIR)光谱领域的技术不断进步,不断产生新的传感模式,提供超越傅立叶变换红外光谱(FT-IR)等传统技术的能力。利用可调谐量子级联激光器和马赫-泽恩德干涉仪进行液相分析的中红外色散光谱技术就是其中一项进步。我们的研究评估了定制近红外色散光谱仪在当前开发阶段的性能,将其性能与傅立叶变换红外光谱仪进行了比较,并验证了其在时间分辨化学反应监测方面的潜力。与使用强度衰减测量分子吸收的传统红外光谱分析方法不同,我们的方法可以检测到折射率变化(相移),最小可达到 6.1 × 10-7 折射率单位 (RIU)。这样,在分析路径长度增加七倍的情况下,灵敏度提高了 1.5 倍,与傅立叶变换红外光谱相比,液体分析的稳健性大大增强。作为一项案例研究,我们监测了转化酶与蔗糖的催化活性,观察了由此形成的单糖及其向热力学平衡的进展。我们记录了底物浓度从 2.5 克/升到 25 克/升的反应混合物的反常折射率光谱,并在不同温度下进行了分析,得出了与文献相当的迈克尔斯-门顿动力学结论。此外,在记录的动态色散光谱上首次应用了二维相关光谱,正确识别了反应产物(葡萄糖和果糖)的突变。这些结果表明,通过宽带折射率变化研究复杂的随时间变化的化学反应具有很高的精度和灵敏度。
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来源期刊
Applied Spectroscopy
Applied Spectroscopy 工程技术-光谱学
CiteScore
6.60
自引率
5.70%
发文量
139
审稿时长
3.5 months
期刊介绍: Applied Spectroscopy is one of the world''s leading spectroscopy journals, publishing high-quality peer-reviewed articles, both fundamental and applied, covering all aspects of spectroscopy. Established in 1951, the journal is owned by the Society for Applied Spectroscopy and is published monthly. The journal is dedicated to fulfilling the mission of the Society to “…advance and disseminate knowledge and information concerning the art and science of spectroscopy and other allied sciences.”
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