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Structure determination of chemisorbed chirality transfer complexes: Accelerated STM analysis and exchange-correlation functional sensitivity

机译:化学吸附手性转移配合物的结构测定:加速STM分析和交换相关功能敏感性

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摘要

Linking STM images to atomic positions determined by DFT calculations is an important step in characterizing the intermolecular interactions at play in many surface processes including asymmetric hydrogenation on heterogeneous catalysts. An accelerated data extraction method is used to collect STM information on the geometry of complexes formed between the two substrates, 2,2,2-trifluoroacetophenone (TFAP) and 3,3,3-methyltrifluoropyruvate (MTFP), and the chiral modifier (R)-( + )-1-(1-naphthyl)ethylamine ((R)-NEA) on Pt(111). We present new experimental data for complexes formed by MTFP and the (R)-NEA-1 conformer along with a new and enlarged set of reformulated STM data that extends what was reported in previously published studies of complexed MTFP and TFAP. Atomic geometries based on DFT calculations using PBE, M06-L, and optB88-vdW exchange-correlation functionals will also be presented. It will be shown that both substrates have well-defined complexation geometries when interacting with the modifier and that the relative complexation energies are not markedly sensitive to the functional employed.
机译:将STM图像链接到通过DFT计算确定的原子位置是表征许多表面过程中分子间相互作用的重要步骤,其中包括非均相催化剂上的不对称氢化。加速数据提取方法用于收集有关两种底物2,2,2-三氟苯乙酮(TFAP)和3,3,3-甲基三氟丙酮酸酯(MTFP)和手性改性剂(R Pt(111)上的)-(+)-1-(1-萘基)乙胺((R)-NEA)。我们提供了由MTFP和(R)-NEA-1构象异构体形成的复合物的新实验数据,以及一组新的和扩大的重新形成的STM数据,这些数据扩展了以前发表的有关复合MTFP和TFAP研究的报道。还将介绍使用PBE,M06-L和optB88-vdW交换相关函数基于DFT计算的原子几何。可以看出,两种底物在与改性剂相互作用时均具有明确定义的络合几何形状,并且相对络合能对所采用的功能没有明显的敏感性。

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