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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Monitoring and Interpretation of Photoinduced Biochemical Processes by Rapid-Scan FTIR Difference Spectroscopy and Hybrid Hard and Soft Modeling
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Monitoring and Interpretation of Photoinduced Biochemical Processes by Rapid-Scan FTIR Difference Spectroscopy and Hybrid Hard and Soft Modeling

机译:快速扫描FTIR差异光谱法和混合硬模型和软模型对光诱导生化过程的监测和解释

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摘要

Natural photochemical processes often require special instrumentation to monitor them at a suitable time scale. Rapid-scan FTIR difference spectroscopy is one of the preferred techniques to obtain rich structural information in the scale of milliseconds about photochemical processes of complex natural systems. The difference spectra obtained by this technique enhance the fine spectroscopic changes undergone during the process but require powerful data analysis methodologies to take full advantage of the information provided. Hybrid hard- and soft-modeling methodologies allow for coping with difficulties linked to the nature of the time-resolved measurement and to the complexity of the kinetic model describing the natural photochemical process. Thus, this methodology presents the following advantages: (a) handles difference spectra, taking into account the consequences of the lack of measurement about the initial stage of the process, (b) models events of the process that may be defined by a kinetic model (by hard modeling) and events that do not obey a mechanistic behavior (by soft modeling), (c) adapts to the photoaccumulation/relaxation stages of reversible photochemical processes, and (d) works simultaneously with series of experiments performed in different conditions and showing different kinetic behavior. The results of this data treatment provide complete kinetic information on the photochemical processes, e.g., rate constants, and a global picture of the difference spectra and the concentration profiles linked to each of the events (hard or soft modeled) contributing to the measured signal. The performance of the combination of time-resolved differential FTIR and hybrid hard and soft modeling is shown in a complex case study related to the photosynthetic activity Of the reaction center of the purple bacteria Rhodobacter sphaeroides.
机译:天然光化学过程通常需要特殊的仪器来在合适的时间范围内对其进行监控。快速扫描FTIR差异光谱学是获得有关复杂自然系统光化学过程的毫秒级丰富结构信息的首选技术之一。通过这种技术获得的差异光谱增强了过程中发生的精细光谱变化,但是需要强大的数据分析方法来充分利用所提供的信息。混合的硬建模和软建模方法可以解决与时间分辨测量的性质以及描述自然光化学过程的动力学模型的复杂性有关的困难。因此,这种方法具有以下优点:(a)处理差异光谱,考虑到过程初始阶段缺乏测量的后果,(b)建模可能由动力学模型定义的过程事件(通过硬建模)和不遵循机械行为的事件(通过软建模),(c)适应可逆光化学过程的光累积/松弛阶段,并且(d)与在不同条件下进行的一系列实验同时工作,并且表现出不同的动力学行为。该数据处理的结果提供了有关光化学过程的完整动力学信息,例如速率常数,以及差异光谱的全局图和与有助于测量信号的每个事件(硬模型或软模型)相关的浓度分布图。在一个复杂的案例研究中显示了时间分辨差分FTIR与混合硬和软建模相结合的性能,该案例与紫色细菌球形红细菌反应中心的光合活性有关。

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