研究目的
To investigate the structure and dynamics of a photochromic molecular crystal using NMR crystallography, focusing on the enol tautomer and the presence of low-level defects such as cis-keto and trans-keto states, and to understand the molecular dynamics and their implications for photochromism.
研究成果
The study confirms that the photochromic anil primarily adopts the enol form at ambient temperature, with evidence of dynamic processes such as t-butyl group rotation and pyridine ring flipping. The structure's steric freedom and the presence of a weak intermolecular hydrogen bond facilitate these dynamics, which are favorable for photochromism. The findings highlight the utility of NMR crystallography in studying photochromic compounds and understanding the link between molecular structure and macroscopic properties.
研究不足
The study is limited by the difficulty in detecting low-level defects such as cis-keto and trans-keto states experimentally due to their low populations. Additionally, the precise locations of hydrogen-bonded protons in the structures depend on the approximations made in the DFT calculations.