Faculty of Petrochemistry and Polymer Materials, Mendeleev University of Chemical Technology of Russia, Miusskaya sq. 9, 125047 Moscow, Russia.
Taurida Academy, Department of Biochemistry, V. I. Vernadsky Crimean Federal University, Prospekt Akademika Vernadskogo 4, 295007 Simferopol, Russia.
Int J Mol Sci. 2021 May 31;22(11):5958. doi: 10.3390/ijms22115958.
Despite a significant number of investigations in the field of phosphazene chemistry, the formation mechanism of this class of cyclic compounds is still poorly studied. At the same time, a thorough understanding of this process is necessary, both for the direct production of phosphazene rings of a given size and for the controlled cyclization reaction when it is secondary and undesirable. We synthesized a series of short linear phosphazene oligomers with the general formula Cl[PCl2=N]n-PClPCl and studied their tendency to form cyclic structures under the influence of elevated temperatures or in the presence of nitrogen-containing agents, such as hexamethyldisilazane (HMDS) or ammonium chloride. It was established that linear oligophosphazenes are inert when heated in the absence of the mentioned cyclization agents, and the formation of cyclic products occurs only when these agents are involved in the process. The ability to obtain the desired size phosphazene cycle from corresponding linear chains is shown for the first time. Known obstacles, such as side interaction with the PCl counterion and a tendency of longer chains to undergo crosslinking elongation instead of cyclization are still relevant, and ways to overcome them are being discussed.
尽管在磷杂环化学领域进行了大量的研究,但这类环状化合物的形成机制仍未得到充分研究。同时,深入了解这一过程是必要的,无论是为了直接生产给定大小的磷杂环,还是为了在次要和不希望发生的情况下进行可控的环化反应。我们合成了一系列具有通式 Cl[PCl2=N]n-PClPCl 的短线性磷杂环寡聚物,并研究了它们在高温或氮源存在下(如六甲基二硅氮烷 (HMDS) 或氯化铵)形成环状结构的趋势。结果表明,在没有提到的环化剂的情况下,线性寡聚磷杂环加热时是惰性的,只有当这些试剂参与反应时,才会形成环状产物。首次证明了从相应的线性链获得所需尺寸的磷杂环的能力。仍然存在一些已知的障碍,例如与 PCl 抗衡离子的侧相互作用以及较长链倾向于交联伸长而不是环化的趋势,正在讨论克服这些障碍的方法。