首页> 外文期刊>RSC Advances >Attempted characterisation of phenanthrene-4,5-quinone and electrochemical synthesis of violanthrone-16,17-quinone. How does the stability of bay quinones correlate with structural and electronic parameters?
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Attempted characterisation of phenanthrene-4,5-quinone and electrochemical synthesis of violanthrone-16,17-quinone. How does the stability of bay quinones correlate with structural and electronic parameters?

机译:试图表征菲酮-4,5-醌的菲恩酮-16,17-醌的电化学合成。海湾Quinones的稳定性如何与结构和电子参数相关?

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In bay quinones, two carbonyl moieties are forced into close proximity by their spatial arrangement, resulting in an interesting axially chiral and nonplanar structure. Two representatives of this little-explored class of compounds were investigated experimentally in this work. Electrochemical oxidation of 4,5-dihydroxyphenanthrene failed to provide evidence for the reversible formation of phenanthrene-4,5-quinone. Even at temperatures as low as T = 229 K, cyclic voltammograms did not show any evidence for reversibility, indicating that phenanthrene-4,5-quinone likely is a reactive intermediate even at low temperatures. Electrochemical oxidation of the larger homologue 16,17-dihydroxyviolanthrone, on the other hand, was reversible, and the quinone could be characterised by spectroelectrochemical means. The results of quantum chemical calculations confirm the experimental findings and indicate that a bay dicarbonyl moiety, also found in a number of angucycline antibiotics, does not necessarily have to confer extreme reactivity. However, in a series of phenanthrene quinones with an equal number (zero) of Clar sextets and a varying number of bay carbonyl groups (zero to two), there was a clear correlation between the triplet energy, taken as a measure of biradical character, and the number of bay carbonyl moieties, with the lowest triplet energy predicted for phenanthrene-4,5-quinone (two bay carbonyl moieties).
机译:在海湾码头中,两个羰基部分被其空间排列被迫靠近近距离,导致有趣的轴向手性和非平面结构。在这项工作中实验研究了这一小型探索类化合物的两个代表。 4,5-二羟基苯蒽的电化学氧化未能提供菲丙烯-4,5-醌的可逆形成的证据。即使在低至T = 229k的温度下,循环伏安图也没有显示出任何可逆性的证据,表明菲甲烷-4,5-醌可能是即使在低温下也是反应性中间体。另一方面,较大同源物的电化学氧化较大的同源物质16,17-二羟基蒽蒽,并且可以通过光谱电化学装置表征醌。量子化学计算结果证实了实验结果,并表明海湾二羰基部分,也发现在许多亚育霉素抗生素中,并不一定必须赋予极端的反应性。然而,在一系列具有相同数量(零)的Clar Sextets的亚菲醌和不同数量的海湾羰基(零两个)中,三重态能量之间存在明显的相关性,作为荚膜特征的量度,和海湾羰基部分的数量,具有最低的三重态能量,预测菲丙烯-4,5-醌(两个海湾羰基部分)。

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