Jenkins H Donald Brooke, Glasser Leslie, Klapötke Thomas M, Crawford Margaret-Jane, Bhasin Kaldip K, Lee Joe, Schrobilgen Gary J, Sunderlin Lee S, Liebman Joel F
Department of Chemistry, University of Warwick, Coventry CV4 7AL, West Midlands, UK.
Inorg Chem. 2004 Oct 4;43(20):6238-48. doi: 10.1021/ic049186j.
By virtue of our recently established relationships, knowledge of the formula unit volume, V(m), of a solid ionic material permits estimation of thermodynamic properties such as standard entropy, lattice potential energy, and, hence, enthalpy and Gibbs energy changes for reactions. Accordingly, development of an approach to obtain currently unavailable ion volumes can expose compounds containing these ions to thermodynamic scrutiny, such as predictions regarding stability and synthesis. The isomegethic rule, introduced in this paper, states that the formula unit volumes, V(m), of isomeric ionic salts are approximately the same; this rule then forms the basis for a powerful and successful means of predicting unknown ion volumes (as well as providing a means of validating existing volume and density data) and, thereby, providing solid state thermodynamic data. The rule is exploited to generate unknown ion and (by additivity) corresponding formula unit volumes.
凭借我们最近建立的关系,了解固体离子材料的化学式单元体积V(m),可以估算热力学性质,如标准熵、晶格势能,进而估算反应的焓变和吉布斯自由能变化。因此,开发一种获取目前无法获得的离子体积的方法,可以使含有这些离子的化合物接受热力学审查,例如关于稳定性和合成的预测。本文引入的等体积规则指出,异构离子盐的化学式单元体积V(m)大致相同;该规则进而构成了一种强大且成功的预测未知离子体积的方法(以及提供一种验证现有体积和密度数据的手段)的基础,从而提供固态热力学数据。利用该规则生成未知离子体积以及(通过加和性)相应的化学式单元体积。