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从化学演化和功能材料设计的双重角度探讨微波辅助合成 HCN 聚合物。

A dual perspective on the microwave-assisted synthesis of HCN polymers towards the chemical evolution and design of functional materials.

机构信息

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

Instituto Nacional de Técnica Aeroespacial "Esteban Terradas" (INTA), Ctra. Torrejón-Ajalvir, km 4, 28850, Torrejón de Ardoz, Madrid, Spain.

出版信息

Sci Rep. 2020 Dec 18;10(1):22350. doi: 10.1038/s41598-020-79112-5.

Abstract

In this paper, the first study on NHCN polymerization induced by microwave radiation is described, where a singular kinetic behaviour, especially when this reaction is conducted in the absence of air, is found. As a result, a complex conjugated N-heterocyclic polymer system is obtained, whose properties are very different, and even improved according to morphological features, characterized by their X-ray diffraction patterns and scanning electron microscopy analysis, with respect to those produced under conventional thermal treatment. In addition, a wide variety of relevant bioorganics have been identified, such as amino acids, nucleobases, co-factors, etc., from the synthetized NHCN polymers. These particular families of polymers are of high interest in the fields of astrobiology and prebiotic chemistry and, more recently, in the development of smart multifunctional materials. From an astrobiological perspective, microwave-driven syntheses may simulate hydrothermal environments, which are considered ideal niches for increasing organic molecular complexity, and eventually as scenarios for an origin of life. From an industrial point of view and for potential applications, a microwave irradiation process leads to a notable decrease in the reaction times, and tune the properties of these new series macromolecular systems. The characteristics found for these materials encourage the development of further systematic research on this alternative HCN polymerization.

摘要

本文首次描述了微波辐射诱导 NHCN 聚合的研究,发现了一种独特的动力学行为,特别是在没有空气存在的情况下。结果得到了一种复杂的共轭 N-杂环聚合物体系,其性质根据形态特征非常不同,甚至有所改善,这可以通过 X 射线衍射图谱和扫描电子显微镜分析来证明,与传统热处理下生产的聚合物相比,具有更高的性能。此外,还从合成的 NHCN 聚合物中鉴定出了各种相关的生物有机物,如氨基酸、核苷、辅酶等。这些特殊的聚合物家族在天体生物学和前生物化学领域,以及最近在智能多功能材料的开发中具有很高的研究价值。从天体生物学的角度来看,微波驱动的合成可能模拟水热环境,这些环境被认为是增加有机分子复杂性的理想场所,并且可能是生命起源的场景。从工业的角度来看,对于潜在的应用,微波辐照过程可以显著缩短反应时间,并调整这些新型大分子系统的性质。这些材料的特性鼓励对这种替代 HCN 聚合进行进一步的系统研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6dc/7749158/461888ce7461/41598_2020_79112_Fig1_HTML.jpg

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