Dipartimento di Chimica and Istituto CNR di Metodologie Chimiche-IMC, Sezione Meccanismi di Reazione c/o Dipartimento di Chimica, Università degli Studi di Roma "La Sapienza", P. le A. Moro 5, 00185 Rome, Italy.
Phys Chem Chem Phys. 2019 Jan 21;21(3):955-987. doi: 10.1039/c8cp06344c. Epub 2019 Jan 2.
This review article is concerned with the measurement, significance and applications of the concept of effective molarity (EM) in a large variety of cyclization reactions ranging from the formation of giant macromolecules in polymeric equilibrates to the self-assembly of cyclic supermolecules and supramolecular aggregates. Based on a dissection of EM into enthalpic and entropic components (EM = EM× EM), a careful examination of a large number of often overlooked quantitative studies of reversible cyclizations led to the definition of a set of "canonical" values of the entropic component EM, expressed in graphical form by the plot of EM* vs. n, where the asterisk denotes statistically corrected quantities, and n is the number of single bonds in the ring product. It is proposed that, to a useful approximation, all cyclization reactions comply with the "canonical" EM* values, independent of the chemical nature of end groups and of the intervening chain, but solely dependent on the number n of rotatable bonds. The entropic component EM* is approximately the same for cyclizations carried out under kinetic or thermodynamic control, and does not appear to be altered to a very significant extent by replacement of covalent with noncovalent bonds.
这篇综述文章关注的是有效摩尔浓度(EM)概念在各种环化反应中的测量、意义和应用,这些反应范围从聚合平衡中形成巨型大分子到环状超分子和超分子聚集体的自组装。通过将 EM 分解为焓和熵分量(EM = EM× EM),仔细研究了大量经常被忽视的可逆环化的定量研究,定义了一组“典型”的熵分量 EM 值,以 EM* 与 n 的关系图表示,其中星号表示经过统计修正的量,n 是环产物中单键的数量。据提出,在有用的近似值下,所有的环化反应都符合“典型”的 EM* 值,与端基的化学性质和链间的化学性质无关,而仅取决于可旋转键的数量 n。在动力学或热力学控制下进行的环化反应中,熵分量 EM* 大致相同,并且通过用非共价键取代共价键,其似乎不会发生非常显著的变化。