New approaches to the synthesis of substituted derivatives of the [B3H8]− anion

A. A. Lukoshkova, A. T. Shulyak, E. E. Posypayko, N. A. Selivanov, A. V. Golubev, А. S. Kubasov, A. Bykov, A. P. Zhdanov, K. Zhizhin, N. Kuznetsov
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Abstract

Objectives. To develop methods for the synthesis of substituted derivatives of the octahydrotriborate anion. Such compounds can be considered as hydrogen storage, components of ionic liquids, precursors for the production of boride coatings using the traditional chemical vapor deposition method, and also as a building material for the production of higher boron hydrogen clusters.Methods. Since substitution reactions are sensitive to moisture and atmospheric oxygen, the syntheses were carried out in a direct flow of argon or in a dry, sealed SPEKS GB02M glove box with a double gas purification unit and two airlocks. The reaction was initiated by cooling to 0°C, in order to avoid the formation of by-products. All the results were characterized using infrared (IR) and nuclear magnetic resonance (NMR) spectroscopies.Results. The study presents a detailed study of the known methods for preparing substituted derivatives of the octahydrotriborate(1−) anion using dry hydrogen chloride as an electrophilic inductor and makes recommendations for improvement. In this method it is advisable to use cesium octahydrotriborate which facilitates the yield of the target product. New methods were proposed to initiate the substitution reaction in the [B3H8]−-anion using N-chlorosuccinimide and bromine. Using these inductors, new substituted derivatives of the octahydrotriborate anion with N-nucleophiles were obtained and defined by means of IR and NMR spectroscopies: [B3H7NCR], (R = Et, i-Pr, Ph) and [B3H7NH2R], (R = C9H19 (INA), Bn), [B3H7NHEt2], as well as Bu4N[B3H7Hal], Bu4N[B3H6Hal2], where Hal = Сl, Br. It was also established that hydrogen bromide is released during the reaction with bromine and amines. This immediately protonates the amine which requires additional heating of the reaction mixture. The study also established that the reaction mechanism with N-chlorosuccinimide is not radical.Conclusions. The main factors influencing the course of the substitution reaction are the possible occurrence of side interactions between the nucleophile and the inducer, steric possibilities, and subsequent isolation of the reactive reaction products.
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合成[B3H8]-阴离子取代衍生物的新方法
目标: 开发合成八氢三硼酸阴离子取代衍生物的方法。开发合成八氢三硼酸阴离子取代衍生物的方法。此类化合物可用作储氢剂、离子液体的成分、使用传统化学气相沉积法生产硼化物涂层的前体,也可用作生产更高硼氢簇的建筑材料。由于置换反应对湿气和大气中的氧气很敏感,因此合成是在氩气直流或干燥、密封的 SPEKS GB02M 手套箱中进行的,手套箱配有双气体净化装置和两个气闸。反应开始时冷却至 0°C,以避免副产物的生成。所有结果均使用红外(IR)和核磁共振(NMR)光谱进行表征。本研究对使用干氯化氢作为亲电诱导剂制备八氢三硼酸(1-)阴离子取代衍生物的已知方法进行了详细研究,并提出了改进建议。在该方法中,建议使用八氢三硼酸铯,这有助于提高目标产物的产量。还提出了使用 N-氯代丁二酰亚胺和溴引发 [B3H8]- 阴离子取代反应的新方法。利用这些诱导剂,获得了八氢三硼酸阴离子与 N-亲核物的新取代衍生物,并通过红外光谱和核磁共振光谱对其进行了定义:[B3H7NCR](R = Et、i-Pr、Ph)和[B3H7NH2R](R = C9H19 (INA)、Bn)、[B3H7NHEt2]以及 Bu4N[B3H7Hal], Bu4N[B3H6Hal2] (其中 Hal = Сl、Br)。研究还发现,溴化氢在与溴和胺反应时会释放出来。这会立即使胺质子化,这就需要进一步加热反应混合物。研究还确定,与 N-氯代丁二酰亚胺的反应机理不是自由基反应。影响取代反应进程的主要因素是亲核体和诱导剂之间可能发生的侧相互作用、立体可能性以及随后分离反应产物的过程。
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