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通过由二氧化碳笼形水合物直接合成来探索碳酸中的高压多晶型现象。

Exploring High-Pressure Polymorphism in Carbonic Acid through Direct Synthesis from Carbon Dioxide Clathrate Hydrate.

作者信息

Berni Selene, Scelta Demetrio, Romi Sebastiano, Fanetti Samuele, Alabarse Frederico, Pagliai Marco, Bini Roberto

机构信息

LENS - European Laboratory for Non-Linear Spectroscopy, Via Nello Carrara 1, I-50019, Sesto Fiorentino, Firenze, Italy.

ICCOM-CNR, Istituto di Chimica dei Composti OrganoMetallici, Via Madonna del Piano 10, I-50019, Sesto Fiorentino, Firenze, Italy.

出版信息

Angew Chem Int Ed Engl. 2024 May 27;63(22):e202403953. doi: 10.1002/anie.202403953. Epub 2024 Apr 23.

DOI:10.1002/anie.202403953
PMID:38536217
Abstract

Carbon dioxide (CO) is widespread in astrochemically relevant environments, often coexisting with water (HO) ices and thus triggering a great interest regarding the possible formation of their adducts under various thermodynamic conditions. Amongst them, solid carbonic acid (HCO) remains elusive, yet being widely studied. Synthetic routes followed for its production have always been characterised by drastic irradiation on solid ice mixtures or complex procedures on fluid samples (such as laser heating at moderate to high pressures). Here we report about a simpler yet effective synthetic route to obtain two diverse carbonic acid crystal structures from the fast, cold compression of pristine clathrate hydrate samples. The two distinct polymorphs we obtained, differing in the water content, have been deeply characterised via spectroscopic and structural techniques to assess their composition and their astonishing pressure stability, checked up to half a megabar, also highlighting the complex correlations between them so to compile a detailed phase diagram of this system. These results may have a profound impact on the prediction and modelisation of the complex chemistry which characterises many icy bodies of our Solar System.

摘要

二氧化碳(CO)广泛存在于与天体化学相关的环境中,常常与水(HO)冰共存,因此引发了人们对在各种热力学条件下它们加合物可能形成的极大兴趣。其中,固体碳酸(HCO)仍然难以捉摸,但却受到广泛研究。用于其制备的合成路线一直以来的特点是对固体冰混合物进行剧烈辐照或对流体样品采用复杂程序(如在中高压下激光加热)。在此,我们报告一种更简单但有效的合成路线,通过对原始笼形水合物样品进行快速、低温压缩来获得两种不同的碳酸晶体结构。我们获得的两种不同多晶型物,在水含量上有所不同,已通过光谱和结构技术进行了深入表征,以评估它们的组成及其惊人的压力稳定性,测试压力高达半兆巴,还突出了它们之间复杂的相关性,从而编制出该系统的详细相图。这些结果可能对表征我们太阳系中许多冰体的复杂化学过程的预测和建模产生深远影响。

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引用本文的文献

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UV-Vis Spectra of Carbonic Acid: Rationalizing Experimental Redshifts between Monomer and Bulk based on (HCO) Calculations.碳酸的紫外-可见光谱:基于(HCO)计算对单体与本体之间实验红移的合理化解释
Chemphyschem. 2025 Sep 19;26(18):e202500282. doi: 10.1002/cphc.202500282. Epub 2025 Aug 4.
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Crystal Structure of Carbonic Acid (HCO) at Elevated Pressures from Single-Crystal Diffraction.通过单晶衍射测定的高压下碳酸(HCO)的晶体结构。
Chemistry. 2025 Sep 5;31(50):e202501964. doi: 10.1002/chem.202501964. Epub 2025 Jul 9.