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理解特定离子的效应和豪夫迈斯特序列。

Understanding specific ion effects and the Hofmeister series.

机构信息

Discipline of Chemistry, School of Environmental and Life Sciences, The University of Newcastle, Callaghan, New South Wales 2308, Australia.

Department of Materials Physics, Research School of Physics, Australian National University, Canberra, ACT 0200, Australia.

出版信息

Phys Chem Chem Phys. 2022 Jun 1;24(21):12682-12718. doi: 10.1039/d2cp00847e.

Abstract

Specific ion effects (SIE), encompassing the Hofmeister Series, have been known for more than 130 years since Hofmeister and Lewith's foundational work. SIEs are ubiquitous and are observed across the medical, biological, chemical and industrial sciences. Nevertheless, no general predictive theory has yet been able to explain ion specificity across these fields; it remains impossible to predict when, how, and to what magnitude, a SIE will be observed. In part, this is due to the complexity of real systems in which ions, counterions, solvents and cosolutes all play varying roles, which give rise to anomalies and reversals in anticipated SIEs. Herein we review the historical explanations for SIE in water and the key ion properties that have been attributed to them. Systems where the Hofmeister series is perturbed or reversed are explored, as is the behaviour of ions at the liquid-vapour interface. We discuss SIEs in mixed electrolytes, nonaqueous solvents, and in highly concentrated electrolyte solutions - exciting frontiers in this field with particular relevance to biological and electrochemical applications. We conclude the perspective by summarising the challenges and opportunities facing this SIE research that highlight potential pathways towards a general predictive theory of SIE.

摘要

特定离子效应(SIE),包括霍夫迈斯特序列,自霍夫迈斯特和卢维思的基础工作以来已经有 130 多年的历史了。SIE 无处不在,在医学、生物、化学和工业科学中都有观察到。然而,目前还没有一种通用的预测理论能够解释这些领域的离子特异性;仍然不可能预测何时、如何以及在多大程度上会观察到 SIE。部分原因是由于实际系统的复杂性,其中离子、抗衡离子、溶剂和共溶剂都起着不同的作用,这导致了预期 SIE 的异常和反转。本文回顾了在水中解释 SIE 的历史以及归因于 SIE 的关键离子特性。还探讨了霍夫迈斯特序列受到干扰或反转的系统,以及离子在液-气界面的行为。我们讨论了混合电解质、非水溶剂和高浓度电解质溶液中的 SIE,这些都是该领域令人兴奋的前沿领域,特别是与生物和电化学应用有关。最后,我们通过总结该 SIE 研究面临的挑战和机遇,概述了该 SIE 研究的潜在途径,这些研究为 SIE 的通用预测理论提供了潜在的途径。

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