低空隙六氰铬酸铬的非水合成。

IF 4.3 2区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR Inorganic Chemistry Pub Date : 2024-11-17 DOI:10.1021/acs.inorgchem.4c03856
Maximilian Schart, Ramón Torres-Cavanillas, Samuel Wheeler, Kevin Hurlbutt, Pascal Manuel, Dmitry Khalyavin, Ruomu Zhang, David Vincent, Xavier Rocquefelte, George Volonakis, Andrew Goodwin, Lapo Bogani, Mauro Pasta
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引用次数: 0

摘要

普鲁士蓝类似物(PBAs)是一种可调性很强的材料,其特性适用于多种应用。虽然它们可以直接进行水性合成,从而方便地制备出各种不同的成分,但由于使用水作为溶剂,制备具有人们高度追求的特性的特定成分受到了阻碍。一个典型的例子是 Cr[Cr(CN)6]:由于其预测的强磁性相互作用,人们曾多次尝试合成它,但收效甚微。由于缺乏对空位、结晶度和氧化态的控制,无法对其理论磁性能进行实验验证。在此,我们报告了空位抑制的纳米结晶六氰铬酸铬的非水合成。对空位和氧化态的控制导致了更强的磁性相互作用,其绝对韦斯温度(Θ = -836(6) K)和磁有序温度(240 ± 10)K 显著增加。我们的研究结果挑战了溶剂仅仅是反应介质的概念,并为探索湿气和空气敏感的 PBA 成分提供了一条途径。
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Nonaqueous Synthesis of Low-Vacancy Chromium Hexacyanochromate.

Prussian blue analogues (PBAs) are a highly tunable family of materials with properties suitable for a wide variety of applications. Although their straightforward aqueous synthesis allows for the facile preparation of a diverse set of compositions, the use of water as the solvent has hindered the preparation of specific compositions with highly sought-after properties. A typical example is Cr[Cr(CN)6]: its predicted strong magnetic interactions have motivated many attempts at its synthesis but with limited success. The lack of control over vacancies, crystallinity, and the oxidation state has prevented the experimental validation of its theoretical magnetic properties. Here, we report the nonaqueous synthesis of vacancy-suppressed, nanocrystalline chromium hexacyanochromate. The control over vacancies and the oxidation state leads to stronger magnetic interactions with a markedly increased absolute Weiss temperature (Θ = -836(6) K) and magnetic ordering temperature of (240 ± 10) K. Our results challenge the notion of the solvent as merely reaction medium and introduce a pathway for exploring moisture- and air-sensitive PBA compositions.

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来源期刊
Inorganic Chemistry
Inorganic Chemistry 化学-无机化学与核化学
CiteScore
7.60
自引率
13.00%
发文量
1960
审稿时长
1.9 months
期刊介绍: Inorganic Chemistry publishes fundamental studies in all phases of inorganic chemistry. Coverage includes experimental and theoretical reports on quantitative studies of structure and thermodynamics, kinetics, mechanisms of inorganic reactions, bioinorganic chemistry, and relevant aspects of organometallic chemistry, solid-state phenomena, and chemical bonding theory. Emphasis is placed on the synthesis, structure, thermodynamics, reactivity, spectroscopy, and bonding properties of significant new and known compounds.
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