High-Pressure Synthesis and Characterization of Li2Ca3[N2]3An Uncommon Metallic Diazenide with [N2]2– Ions
收藏Figshare2016-02-18 更新2026-04-29 收录
下载链接:
https://figshare.com/articles/dataset/High_Pressure_Synthesis_and_Characterization_of_Li_sub_2_sub_Ca_sub_3_sub_N_sub_2_sub_sub_3_sub_An_Uncommon_Metallic_Diazenide_with_N_sub_2_sub_sup_2_sup_Ions/2359456
下载链接
链接失效反馈官方服务:
资源简介:
Dinitrogen (N2) ligation is a common and well-characterized structural motif in bioinorganic synthesis. In solid-state chemistry, on the other hand, homonuclear dinitrogen entities as structural building units proved existence only very recently. High-pressure/high-temperature (HP/HT) syntheses have afforded a number of binary diazenides and pernitrides with [N2]2– and [N2]4– ions, respectively. Here, we report on the HP/HT synthesis of the first ternary diazenide. Li2Ca3[N2]3 (space group Pmma, no. 51, a = 4.7747(1), b = 13.9792(4), c = 8.0718(4) Å, Z = 4, wRp = 0.08109) was synthesized by controlled thermal decomposition of a stoichiometric mixture of lithium azide and calcium azide in a multianvil device under a pressure of 9 GPa at 1023 K. Powder X-ray diffraction analysis reveals strongly elongated N–N bond lengths of dNN = 1.34(2)–1.35(3) Å exceeding those of previously known, binary diazenides. In fact, the refined N–N distances in Li2Ca3[N2]3 would rather suggest the presence of [N2]3·– radical ions. Also, characteristic features of the N–N stretching vibration occur at lower wavenumbers (1260–1020 cm–1) than in the binary phases, and these assignments are supported by first-principles phonon calculations. Ultimately, the true character of the N2 entity in Li2Ca3[N2]3 is probed by a variety of complementary techniques, including electron diffraction, electron spin resonance spectroscopy (ESR), magnetic and electric conductivity measurements, as well as density-functional theory calculations (DFT). Unequivocally, the title compound is shown to be metallic containing diazenide [N2]2– units according to the formula (Li+)2(Ca2+)3([N2]2–)3·(e–)2.
创建时间:
2016-02-18



