混合价二元银(I,II)氟化物 AgI2AgIIF4 和 AgIAgIIF3 的机械化学合成和磁性能

IF 15.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Matic Belak Vivod, Zvonko Jagličić, Graham King, Thomas C. Hansen, Matic Lozinšek and Mirela Dragomir*, 
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引用次数: 0

摘要

氟代精氨酸(II)是一类迷人的银(II)化合物,其结构和磁性与铜氧化物超导体相似。然而,它们的合成具有很大的挑战性,使得它们的性质在很大程度上未得到充分探索,并阻碍了新阶段的发现。本研究采用机械化学方法合成氟代精氨酸(II),避免了使用无水氢氟酸或元素氟,并采用了现成的设备。值得注意的是,通过球磨市场上可买到的前体,成功制备出了人们寻求已久的首两种二元混合价银(I,II)相,即 AgI2AgIIF4 (Ag3F4) 和 AgIAgIIF3 (Ag2F3)。AgI2AgIIF4相是在室温下获得的,而AgIAgIIF3相则是析出的,需要在低温条件下研磨。同步辐射粉末 X 射线和中子衍射表征显示,AgI2AgIIF4 在 P21/c 空间群中结晶,与 β-K2AgF4 结构相同。在这种晶体结构中,[AgIIF2F4/2]2-畸变八面体单元具有 4 + 2 配位,平行于 a 晶体轴延伸,具有准一维悬臂反铁磁性,磁感应强度表明了这一点。三棱包晶 AgIAgIIF3 相采用 P1̅空间群,与 AgCuF3 结构相同,也显示出一维反铁磁体的特征。这种机械化学方法也成功地应用于合成β-K2AgF4,有望拓展银(II)化学领域,加速寻找铜氧化物超导体的银类似物,并有可能扩展到其他非正常氧化态的阳离子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanochemical Synthesis and Magnetic Properties of the Mixed-Valent Binary Silver(I,II) Fluorides, AgI2AgIIF4 and AgIAgIIF3

Fluoridoargentates(II) represent a fascinating class of silver(II) compounds with structural and magnetic similarities to cuprate superconductors. However, their synthesis is challenging, leaving their properties largely underexplored and hindering the discovery of new phases. This study introduces mechanochemistry as a novel approach for the synthesis of fluoridoargentates(II), avoiding the use of anhydrous HF or elemental fluorine and employing readily available equipment. Notably, ball milling of commercially available precursors successfully produced the long-sought-after first two examples of binary mixed-valent silver(I,II) phases, AgI2AgIIF4 (Ag3F4) and AgIAgIIF3 (Ag2F3). While the AgI2AgIIF4 phase was obtained at room temperature, the AgIAgIIF3 phase is metastable and required milling under cryogenic conditions. Characterization by synchrotron powder X-ray and neutron diffraction revealed that AgI2AgIIF4 crystallizes in the P21/c space group and is isostructural to β-K2AgF4. In this crystal structure, [AgIIF2F4/2]2– distorted octahedral units with 4 + 2 coordination, extend parallel to a-crystallographic axis giving a quasi-one-dimensional canted antiferromagnetic character, as shown by magnetic susceptibility. The triclinic perovskite AgIAgIIF3 phase adopts the P1̅ space group, is isostructural to AgCuF3 and also shows features of a one-dimensional antiferromagnet. This mechanochemical approach, also successfully applied to synthesize β-K2AgF4, is expected to expand the field of silver(II) chemistry, accelerating the search for silver analogs to cuprate superconductors and potentially extending to other cations in unusual oxidation states.

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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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