Wintgens Véronique, Lorthioir Cédric, Miskolczy Zsombor, Amiel Catherine, Biczók László
Université Paris Est, ICMPE (UMR 7182), CNRS, UPEC, 2 rue Henri Dunant, F 94320 Thiais, France.
Sorbonne Université, CNRS, Collège de France, Laboratoire de Chimie de la Matière Condensée de Paris (LCMCP), 4 Place Jussieu, 75005 Paris, France.
ACS Omega. 2018 Aug 2;3(8):8631-8637. doi: 10.1021/acsomega.8b00736. eCollection 2018 Aug 31.
The effect of the chain length of the alkyl and alkoxy substituents on the binding characteristics of 1-alkyl-6-alkoxy-quinolinium cations was studied using 4-sulfonatocalix[4]arene (SCX4) and 4-sulfonatocalix[6]arene (SCX6) in neutral aqueous solutions at 298 K. Isothermal calorimetric titrations showed enthalpy-controlled inclusion with 1:1 stoichiometry. The equilibrium constants of complexation were always larger for the confinement in SCX4 than in its SCX6 homologue because the better matching between the host and guest sizes allowed more exothermic interaction. The binding affinity diminished with the lengthening of the aliphatic chain of the guests in the case of the association with SCX4, but insignificant change was found for SCX6 complexes. The most substantial change in the enthalpic and entropic contributions to the driving force of complex production occurred when the alkyl chain was linked to the heterocyclic nitrogen and the number of its carbon atoms varied between 1 and 4. H NMR spectra evidenced that in SCX6, the 1-alkyl-6-alkoxy-quinolinium cations could be included within the macrocycle cavity. In the case of SCX4, the quinolinium ring is always inside the host, but the alkyl chain is included within SCX4 only for a short chain length ( up to 4). In contrast, the alkoxy chain displays a very weak interaction with the cavity irrespective of the length. Because of the outward orientation from the host, the lengthening of the alkoxy substituent of the quinolinium moiety barely influenced the thermodynamics of inclusion in SCX4. Distinct linear enthalpy-entropy correlations were found for the encapsulation in SCX4 and SCX6.
在298K的中性水溶液中,使用4-磺酸基杯[4]芳烃(SCX4)和4-磺酸基杯[6]芳烃(SCX6)研究了烷基和烷氧基取代基的链长对1-烷基-6-烷氧基喹啉鎓阳离子结合特性的影响。等温滴定量热法表明形成了化学计量比为1:1的焓控包合物。由于主体和客体尺寸之间的更好匹配允许更放热的相互作用,所以对于在SCX4中的包封,络合平衡常数总是大于其同系物SCX6中的。在与SCX4缔合的情况下,结合亲和力随着客体脂肪链的延长而降低,但对于SCX6络合物发现变化不明显。当烷基链连接到杂环氮上且其碳原子数在1至4之间变化时,对络合物形成驱动力的焓和熵贡献发生了最显著的变化。1H NMR光谱证明,在SCX6中,1-烷基-6-烷氧基喹啉鎓阳离子可以被包含在大环腔内。在SCX4的情况下,喹啉环总是在主体内部,但仅对于短链长度(至多4),烷基链才被包含在SCX4内。相反,无论链长如何,烷氧基链与腔的相互作用都非常弱。由于从主体向外的取向,喹啉鎓部分的烷氧基取代基的延长几乎不影响在SCX4中的包封热力学。对于在SCX4和SCX6中的包封,发现了明显的线性焓-熵相关性。