Parisi Emmanuele, Landi Alessandro, Fusco Sandra, Manfredi Carla, Peluso Andrea, Wahler Sabrina, Klapötke Thomas M, Centore Roberto
Department of Chemical Sciences, University of Naples Federico II, Via Cinthia, I-80126 Naples, Italy.
Department of Chemistry and Biology, University of Salerno, Via Giovanni Paolo II, 132, I-84084 Fisciano, Salerno, Italy.
Inorg Chem. 2021 Nov 1;60(21):16213-16222. doi: 10.1021/acs.inorgchem.1c02002. Epub 2021 Oct 12.
The synthesis and characterization of the N-rich bis(triazole) compound 1,4'-[3,3'-bis(1,2,4-triazole)]-4',5,5'-triamine (CHN) with a N content of 69.6% by weight is reported. The compound exhibits a rich acid-base behavior because it can accept up to two protons, forming a monocation and a dication, and can lose one proton, forming an anion. Measurement of the acid constants has shown that there exist well-defined pH intervals in which each of the four species is predominant in solution, opening the way to their isolation and characterization by single-crystal X-ray analysis as salts with different counterions. Some energetic salts of the monocation or dication containing oxidizing inorganic counterions (dinitramide, perchlorate, and nitrate) were also prepared and characterized in the solid state for their sensitivity. In particular, the neutral compound shows a very remarkable thermal stability in air, with = 347 °C, and is insensitive to impact and friction. Salts of the dication with energetic counterions, in particular perchlorate and nitrate, show increased sensitivities and reduced thermal stability. The salt of the monocation with dinitramide as the counterion outperforms other dinitramide salts reported in the literature because of its higher thermal stability ( = 230 °C in air) and friction insensitiveness.
报道了氮含量为69.6%(重量)的富氮双(三唑)化合物1,4'-[3,3'-双(1,2,4-三唑)]-4',5,5'-三胺(CHN)的合成与表征。该化合物表现出丰富的酸碱行为,因为它最多可接受两个质子,形成单阳离子和双阳离子,并且可以失去一个质子,形成阴离子。酸常数的测量表明,在溶液中存在明确的pH区间,其中四种物种中的每一种在溶液中占主导地位,这为通过单晶X射线分析将它们作为具有不同抗衡离子的盐进行分离和表征开辟了道路。还制备了一些含有氧化性无机抗衡离子(二硝酰胺、高氯酸盐和硝酸盐)的单阳离子或双阳离子的含能盐,并对其固态敏感性进行了表征。特别是,中性化合物在空气中表现出非常显著的热稳定性, = 347 °C,并且对冲击和摩擦不敏感。双阳离子与含能抗衡离子形成的盐,特别是高氯酸盐和硝酸盐,表现出更高的敏感性和更低的热稳定性。以二硝酰胺为抗衡离子的单阳离子盐由于其更高的热稳定性(在空气中 = 230 °C)和对摩擦不敏感,优于文献中报道的其他二硝酰胺盐。