Weekes David Michael, Diebold Carine, Mobian Pierre, Huguenard Clarisse, Allouche Lionel, Henry Marc
Laboratoire de Chimie Moléculaire de l'Etat Solide (UMR 7140), 4, rue Blaise Pascal, University of Strasbourg, Strasbourg (France).
Chemistry. 2014 Apr 22;20(17):5092-101. doi: 10.1002/chem.201304317. Epub 2014 Mar 18.
The spontaneous self-assembly of a neutral circular trinuclear Ti(IV) -based helicate is described through the reaction of titanium(IV) isopropoxide with a rationally designed tetraphenolic ligand. The trimeric ring helicate was obtained after diffusion of n-pentane into a solution with dichloromethane. The circular helicate has been characterized by using single-crystal X-ray diffraction study, (13) C CP-MAS NMR and (1) H NMR DOSY solution spectroscopic, and positive electrospray ionization mass-spectrometric analysis. These analytical data were compared with those obtained from a previously reported double-stranded helicate that crystallizes in toluene. The trimeric ring was unstable in a pure solution with dichloromethane and transformed into the double-stranded helicate. Thermodynamic analysis by means of the PACHA software revealed that formation of the double-stranded helicates was characterized by ΔH(toluene)=-30 kJ mol(-1) and ΔS(toluene)=+357 J K(-1) mol(-1) , whereas these values were ΔH(CH2 Cl2 )=-75 kJ mol(-1) and ΔS(CH2 Cl2 )=-37 J K(-1) mol(-1) for the ring helicate. The transformation of the ring helicate into the double-stranded helicate was a strongly endothermic process characterized by ΔH(CH2 Cl2 )=+127 kJ mol(-1) and ΔH(n-pentane)=+644 kJ mol(-1) associated with a large positive entropy change ΔS=+1115 J K(-1) ⋅mol(-1) . Consequently, the instability of the ring helicate in pure dichloromethane was attributed to the rather high dielectric constant and dipole moment of dichloromethane relative to n-pentane. Suggestions for increasing the stability of the ring helicate are given.
通过异丙醇钛与合理设计的四酚配体的反应,描述了一种中性环状三核钛(IV)基螺旋配合物的自发自组装过程。将正戊烷扩散到含有二氯甲烷的溶液中后,得到了三聚环螺旋配合物。通过单晶X射线衍射研究、(13)C CP-MAS NMR和(1)H NMR DOSY溶液光谱以及正电喷雾电离质谱分析对环状螺旋配合物进行了表征。将这些分析数据与先前报道的在甲苯中结晶的双链螺旋配合物所获得的数据进行了比较。三聚环在纯二氯甲烷溶液中不稳定,会转化为双链螺旋配合物。借助PACHA软件进行的热力学分析表明,双链螺旋配合物的形成特征为ΔH(甲苯)=-30 kJ·mol(-1)和ΔS(甲苯)=+357 J·K(-1)·mol(-1),而对于环螺旋配合物,这些值分别为ΔH(CH2Cl2)=-75 kJ·mol(-1)和ΔS(CH2Cl2)=-37 J·K(-1)·mol(-1)。环螺旋配合物向双链螺旋配合物的转化是一个强烈的吸热过程,其特征为ΔH(CH2Cl2)=+127 kJ·mol(-1)和ΔH(正戊烷)=+644 kJ·mol(-1),伴随着较大的正熵变ΔS=+1115 J·K(-1)·mol(-1)。因此,环螺旋配合物在纯二氯甲烷中的不稳定性归因于二氯甲烷相对于正戊烷具有较高的介电常数和偶极矩。文中给出了提高环螺旋配合物稳定性的建议。