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多变量分析应用于微波驱动的氰化物聚合反应:复杂系统的统计视角

Multivariate Analysis Applied to Microwave-Driven Cyanide Polymerization: A Statistical View of a Complex System.

作者信息

Pérez-Fernández Cristina, González-Toril Elena, Mateo-Martí Eva, Ruiz-Bermejo Marta

机构信息

Centro de Astrobiología (CAB), CSIC-INTA, Ctra. Torrejón-Ajalvir, km 4, Torrejón de Ardoz, 28850 Madrid, Spain.

出版信息

Polymers (Basel). 2023 Jan 12;15(2):410. doi: 10.3390/polym15020410.

Abstract

For the first time, chemometrics was applied to the recently reported microwave-driven cyanide polymerization. Fast, easy, robust, low-cost, and green-solvent processes are characteristic of these types of reactions. These economic and environmental benefits, originally inspired by the constraints imposed by plausible prebiotic synthetic conditions, have taken advantage of the development of a new generation of HCN-derived multifunctional materials. HCN-derived polymers present tunable properties by temperature and reaction time. However, the apparently random behavior observed in the evolution of cyanide polymerizations, assisted by microwave radiation over time at different temperatures, leads us to study this highly complex system using multivariate analytical tools to have a proper view of the system. Two components are sufficient to explain between 84 and 98% of the total variance in the data in all principal component analyses. In addition, two components explain more than 91% of the total variance in the data in the case of principal component analysis for categorical data. These consistent statistical results indicate that microwave-driven polymerization is a more robust process than conventional thermal syntheses but also that plausible prebiotic chemistry in alkaline subaerial environments could be more complex than in the aerial part of these systems, presenting a clear example of the "messy chemistry" approach of interest in the research about the origins of life. In addition, the methodology discussed herein could be useful for the data analysis of extraterrestrial samples and for the design of soft materials, in a feedback view between prebiotic chemistry and materials science.

摘要

化学计量学首次应用于最近报道的微波驱动氰化物聚合反应。快速、简便、稳健、低成本以及绿色溶剂工艺是这类反应的特点。这些经济和环境效益最初源于合理的益生元前体合成条件所施加的限制,现已利用新一代源自HCN的多功能材料的发展。源自HCN的聚合物的性质可通过温度和反应时间进行调节。然而,在不同温度下随着时间推移由微波辐射辅助的氰化物聚合反应演变过程中观察到的明显随机行为,促使我们使用多变量分析工具来研究这个高度复杂的系统,以便对该系统有一个恰当的认识。在所有主成分分析中,两个成分足以解释数据中84%至98%的总方差。此外,在分类数据的主成分分析中,两个成分解释了数据中超过91%的总方差。这些一致的统计结果表明,微波驱动聚合反应是一个比传统热合成更稳健的过程,而且碱性陆地环境中合理的益生元前体化学可能比这些系统的大气部分更复杂,这是生命起源研究中感兴趣的“复杂化学”方法的一个明显例子。此外,本文讨论的方法学对于外星样品的数据分析以及软材料的设计可能有用,这是从益生元前体化学和材料科学之间的反馈角度来看的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bee9/9866860/0c18195cb2f4/polymers-15-00410-g001.jpg

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