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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >To Boldly Look Where No One Has Looked Before: Identifying the Primary Photoproducts of Acetylacetone
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To Boldly Look Where No One Has Looked Before: Identifying the Primary Photoproducts of Acetylacetone

机译:大胆地看看之前没有人看过哪里:鉴定乙酰丙酮的初级光调节

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We investigate the gas-phase photochemistry of the enolone tautomer of acetylacetone (pentane-2,4-dione) following S-2(pi pi*) -> S-0 excitation at lambda = 266 and 248 nm, using three complementary time-resolved spectroscopic methods. Contrary to earlier reports, which claimed to study one-photon excitation of acetylacetone and found OH and CH3 as the only important gas-phase products, we detect 15 unique primary photoproducts and demonstrate that five of them, including OH and CH3, arise solely by multiphoton excitation. We assign the one-photon products to six photochemical channels and show that the most significant pathway is phototautomerization to the diketone form, which is likely an intermediate in several of the other product channels. Furthermore, we measure the equilibrium constant of the tautomerization of the enolone to diketone on S-0 from 320 to 600 K and extract Delta H = 4.1 +/- 0.3 kcal.mol(-1) and Delta S = 6.8 +/- 0.5 cal.mol(-1).K-1 using a vant Hoff analysis. We correct the C-OH bond dissociation energy in acetylacetone, previously determined as 90 kcalmol1 by theory and experiment, to a new value of 121.7 kcal.mol(-1). Our experiments and electronic structure calculations provide evidence that some of the product channels, including phototautomerization, occur on S-0, while others likely occur on excited triplet surfaces. Although the large oscillator strength of the S-2 <- S-0 transition results from the (pi pi*) excitation of the C=C-C=O backbone, similar to conjugated polyenes, the participation of triplets in the dissociation pathways of acetylacetone appears to have more in common with ketone photochemistry.
机译:我们研究了在λ= 266和248nm的S-2(PENPI *) - > S-0激发之后的乙酰丙酮(戊烷-2,4-二酮)的苯乙酮(戊烷-2,4-二酮)的烯酮互变异构体的气相选择性。使用三个互补时间 - 解决光谱法。与早期的报道相反,声称研究了乙酰丙酮的单光子激发,发现OH和CH3作为唯一重要的气相产物,我们检测到15个独特的初级光调节,并证明其中五个,包括OH和CH3,仅通过多光子刺激。我们将单光子产品分配给六个光化学通道,并表明最显着的途径是对二酮形式的光学化,这可能是其中几种产品通道中的中间体。此外,我们从320〜600k测量烯酮在S-0上的Diketone的互卤素的平衡常数,并提取ΔH= 4.1 +/- 0.3 kcal.mol(-1)和delta s = 6.8 +/- 0.5 Cal.mol(-1).k-1使用Vant Hoff分析。我们通过理论和实验校正以前测定为90 kcalmol1的乙酰丙酮中的C-OH键解离子能量,以121.7 kcal.mol(-1)的新值。我们的实验和电子结构计算提供了证据表明,在S-0上发生了一些产品通道,包括光学化,而其他产品通道在激励的三联表面上发生。虽然S-2-S-0转变的大振荡器强度来自C = CC = O骨架的(PI PI *)激发,类似于缀合的聚烯部分,但出现了三元组中的三胞胎的参与,但出现了乙酰丙酮的解离途径与酮光化学有更多的共同之处。

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