Bhasker-Ranganath Suman, Xu Ye
Cain Department of Chemical Engineering, Louisiana State University, Baton Rouge, Louisiana 70803, United States.
ACS Catal. 2022 Aug 19;12(16):10222-10234. doi: 10.1021/acscatal.2c02514. Epub 2022 Aug 5.
Using DFT calculations and acetamide as the main example, we show that ceria is a potential catalyst for the hydrolysis of amide and similar bonds. The overall reaction is endergonic in the gas phase, yielding acetic acid and ammonia, but is slightly exergonic in the aqueous phase, which facilitates ionization of the products (CHCOO and NH ). Neighboring Ce and O sites on the CeO(111), (110), and (100) facets are conducive to the formation of an activated metastable tetrahedral intermediate (TI) complex, followed by C-N bond scission. With van der Waals and solvation effects taken into account, the overall reaction energetics is found to be most favorable on the (111) facet as desorption of acetic acid is much more uphill energetically on (110) and (100). We further suggest that the Ce-O-Ce sites on ceria surfaces can activate X(=Y)-Z type bonds in amides, amidines, and carboxylate and phosphate esters, among many others that we term "generalized esters". A Brønsted-Evans-Polanyi relationship is identified correlating the stability of the transition and final states of the X-Z generalized ester bond scission. A simple descriptor (ΣΔχ) based on the electronegativity of the atoms that constitute the bond (X, Y, Z) versus those of the catalytic site (O, Ce, Ce) captures the trend in the stability of the transition state of generalized ester bond scission and suggests a direction for modifying ceria for targeting specific organic substrates.
以密度泛函理论(DFT)计算并以乙酰胺作为主要示例,我们表明二氧化铈是酰胺及类似键水解的潜在催化剂。该总反应在气相中是吸热的,生成乙酸和氨,但在水相中略微放热,这有利于产物(CH₃COO⁻和NH₄⁺)的离子化。CeO₂(111)、(110)和(100)晶面上相邻的Ce和O位点有利于形成活化的亚稳四面体中间体(TI)络合物,随后发生C-N键断裂。考虑到范德华力和溶剂化效应,发现总反应能量学在(111)晶面上最为有利,因为乙酸在(110)和(100)晶面上的解吸在能量上要高得多。我们进一步表明,二氧化铈表面上的Ce-O-Ce位点可以活化酰胺、脒以及羧酸酯和磷酸酯中的X(=Y)-Z型键,以及许多其他我们称为“广义酯”的键。确定了布朗斯特-埃文斯-波兰尼关系,该关系将X-Z广义酯键断裂的过渡态和终态的稳定性联系起来。基于构成键的原子(X、Y、Z)与催化位点(O、Ce、Ce)的电负性的一个简单描述符(ΣΔχ)捕捉了广义酯键断裂过渡态稳定性的趋势,并为修饰二氧化铈以靶向特定有机底物指明了方向。