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Kinetic studies of cascade reactions in high-throughput systems

机译:高通量系统中级联反应的动力学研究

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The application of robotic systems to the study of complex reaction kinetics is considered, using the cascade reaction A --> B --> C as a working example. Practical problems in calculating the rate constants k(1) and k(2) for the reactions A --> B and B --> C from concentration measurements of C-A, C-B, or C-C are discussed in the light of the symmetry and invertability of the rate equations. A D-optimal analysis is used to determine the points in time and the species that mill give the best (i.e., most accurate) results. When exact data are used, the most robust solution results from measuring the pair of concentrations (C-A, C-C). The system's information function is computed using numeric methods. This function is then used to estimate the amount of information obtainable from a given cascade reaction at any given time. The theoretical findings are compared with experimental results from a set of two-stage cascade experiments monitored using UV-visible spectroscopy. Finally, the pros and cons of using a single reaction sample to estimate both k(1) and k(2) are discussed. [References: 18]
机译:以级联反应A-> B-> C为例,研究了机器人系统在复杂反应动力学研究中的应用。根据对称性和可逆性,讨论了根据CA,CB或CC的浓度测量计算反应A-> B和B-> C的速率常数k(1)和k(2)的实际问题。速率方程式使用D最佳分析来确定时间点和磨碎的物种可获得最佳(即最准确)的结果。当使用准确的数据时,最可靠的解决方案是通过测量浓度对(C-A,C-C)得出的。系统的信息功能是使用数值方法计算的。然后使用此函数来估计在任何给定时间可从给定级联反应获得的信息量。将理论发现与使用紫外可见光谱法监测的一组两阶段级联实验的实验结果进行比较。最后,讨论了使用单个反应样本估计k(1)和k(2)的利弊。 [参考:18]

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