Guerra Jacob, Bajwa Bhvandip, Kumar Prarthana, Vazquez Salvador, Krishnan Viswanathan V, Maitra Santanu
Department of Chemistry, California State University, Fresno, California 93740, United States.
Department of Pathology & Laboratory Medicine, University of California Davis, Davis, California 95616, United States.
ACS Omega. 2020 Apr 13;5(16):9348-9355. doi: 10.1021/acsomega.0c00332. eCollection 2020 Apr 28.
The concept of enthalpy-entropy compensation (EEC) is one of the highly debated areas of thermodynamics. The conformational change due to restricted double-bond rotation shows a classic two-site chemical exchange phenomenon and has been extensively studied. Fifty-four analogs of ,-diethyl--toluamide (DEET) as a model system were synthesized to study the thermodynamics of the partial amide bond character using nuclear magnetic resonance (NMR) spectroscopy. Line-shape analysis as a function of temperature is used to estimate the chemical exchange. Eyring analysis was then used to convert the chemical exchange rates to determine the transition state enthalpy and entropy of the molecules. The experimental design follows selective variations that perturb one aspect of the molecular system and its influence on the observed thermodynamic effect. The results of the study demonstrate that amide bond resonance in analogs of DEET follows an EEC mechanism. Simple modifications made to DEET's structural motif alter both the enthalpy and entropy of the system and were limited overall to a temperature compensation factor, = 292.20 K, 95% CI [290.66, 293.73]. We suggest EEC as a model to describe the kinetic compensation seen in chemical exchange phenomena in analogs of DEET.
焓-熵补偿(EEC)概念是热力学中备受争议的领域之一。由于双键旋转受限导致的构象变化呈现出典型的双位点化学交换现象,并且已经得到了广泛研究。合成了54种作为模型系统的N,N-二乙基间甲苯甲酰胺(DEET)类似物,以利用核磁共振(NMR)光谱研究部分酰胺键性质的热力学。作为温度函数的线形分析用于估计化学交换。然后使用艾林分析将化学交换速率转换,以确定分子的过渡态焓和熵。实验设计遵循选择性变化,这些变化扰动分子系统的一个方面及其对观察到的热力学效应的影响。研究结果表明,DEET类似物中的酰胺键共振遵循EEC机制。对DEET结构基序进行的简单修饰改变了系统的焓和熵,并且总体上局限于温度补偿因子,θ = 292.20 K,95%置信区间[290.66, 293.73]。我们建议将EEC作为一种模型来描述在DEET类似物的化学交换现象中观察到的动力学补偿。