首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Theoretical study of the oxidation catalyst N-hydroxyphthalimide (NHPI): Thermochemical properties, internal rotor potential, and gas- and liquid-phase bond dissociation energies
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Theoretical study of the oxidation catalyst N-hydroxyphthalimide (NHPI): Thermochemical properties, internal rotor potential, and gas- and liquid-phase bond dissociation energies

机译:氧化催化剂N-羟基邻苯二甲酰亚胺(NHPI)的理论研究:热化学性质,内部转子电势以及气相和液相键解离能

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N-Hydroxyphthalimide (NHPI) has received significant attention in recent years as a catalyst of oxidation synthesis reactions. In this study, we use quantum chemical methods to calculate the molecular geometries, vibrational frequencies, and thermochemical properties of NHPI and the species corresponding to OH hydrogen loss in NHPI, the phthalimide N-oxyl radical (PINO). We also study an analogue of NHPI, N-hydroxymaleimide (NHMI), and we demonstrate that NHPI and NHMI have similar thermochemical properties. G3B3 and CBS-APNO calculations with bond-isodesmic work reactions provide O-H BDEs of 83.3 and 83.5 kcal mol(-1) (348.5 and 349.4 kJ mol(-1)) for NHPI and NHMI, respectively, in the gas phase. Liquid-phase bond energy calculations are performed using the solvents benzene, carbon tetrachloride, acetone, ethanol, DMSO, and acetonitrile with the PCM solvent model. From these liquid-phase G3B3 calculations, we calculate a NHPI O-H BDE of between 83.3 and 83.7 kcal mol(-1) (348.5 and 350.2 kJ mol(-1)) in a variety of polar and nonpolar solvents. We propose that the favorable catalytic properties of NHPI are, in part, due to its O-H bond being close in energy to typical ROO-H bonds and resonantly stabilized C-H bonds.
机译:近年来,N-羟基邻苯二甲酰亚胺(NHPI)作为氧化合成反应的催化剂受到了广泛的关注。在这项研究中,我们使用量子化学方法来计算NHPI的分子几何结构,振动频率和热化学性质,以及与NHPI,邻苯二甲酰亚胺N-氧基自由基(PINO)中的OH氢损失相对应的物质。我们还研究了NHPI的类似物N-羟基马来酰亚胺(NHMI),并且我们证明了NHPI和NHMI具有相似的热化学性质。结合等价功反应的G3B3和CBS-APNO计算提供了气相中NHPI和NHMI的O-H BDE分别为83.3和83.5 kcal mol(-1)(348.5和349.4 kJ mol(-1))。液相键能的计算是使用溶剂,苯,四氯化碳,丙酮,乙醇,DMSO和乙腈以及PCM溶剂模型进行的。根据这些液相G3B3计算,我们在各种极性和非极性溶剂中计算得出的NHPI O-H BDE在83.3至83.7 kcal mol(-1)(348.5至350.2 kJ mol(-1))之间。我们认为,NHPI的良好催化性能部分是由于其O-H键的能量与典型的ROO-H键和共振稳定的C-H键的能量接近。

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