Department of Chemistry and Biochemistry, University of California , Los Angeles, California 90095, United States.
J Am Chem Soc. 2017 Sep 27;139(38):13312-13317. doi: 10.1021/jacs.7b04449. Epub 2017 Sep 12.
The nanosecond electronic spectra and kinetics of the radical pairs from various crystalline tetraarylacetones were obtained using transmission laser flash photolysis methods by taking advantage of aqueous nanocrystalline suspensions in the presence of submicellar CTAB, which acts as a surface passivator. After showing that all tetraarylacetones react efficiently by a photodecarbonylation reaction in the crystalline state, we were able to detect the intermediate radical pairs within the ca. 8 ns laser pulse of our laser setup. We showed that the solid-state spectra of the radical pairs are very similar to those detected in solution, with λ in the 330-360 nm range. Kinetics in the solid state was observed to be biexponential and impervious to the presence of oxygen or variations in laser power. A relatively short-lived component (0.3-1.7 μs) accounts for only 3-8% of the total decay with a longer-lived component having a time constant in the range of 40-90 μs depending on the nature of the substituents.
利用在存在亚胶束 CTAB 的情况下的水纳米晶悬浮液,通过透射激光闪光光解方法获得了来自各种晶态四芳基丙酮的自由基对的纳秒电子光谱和动力学,CTAB 作为表面钝化剂。在表明所有四芳基丙酮在晶态下通过光脱羰反应有效地反应后,我们能够在我们的激光装置的约 8 ns 激光脉冲内检测到中间自由基对。我们表明,自由基对的固态光谱与在溶液中检测到的非常相似,λ 在 330-360 nm 范围内。在固态中的动力学被观察为双指数,并且不受氧气或激光功率变化的影响。具有较短寿命的组分(0.3-1.7 μs)仅占总衰减的 3-8%,具有较长寿命的组分的时间常数在 40-90 μs 范围内,具体取决于取代基的性质。