Ceppatelli Matteo, Serrano-Ruiz Manuel, Morana Marta, Dziubek Kamil, Scelta Demetrio, Bini Roberto, Peruzzini Maurizio
ICCOM-CNR, Institute of Chemistry of OrganoMetallic Compounds, National Research Council of Italy, Via Madonna del Piano 10, I-50019 Sesto Fiorentino, Firenze, Italy.
LENS, European Laboratory for Non-linear Spectroscopy, Via N. Carrara 1, I-50019 Sesto Fiorentino, Firenze, Italy.
Acc Chem Res. 2025 Oct 7;58(19):2927-2938. doi: 10.1021/acs.accounts.5c00309. Epub 2025 Sep 26.
ConspectusNitrides represent a class of chemical compounds of high scientific and technological relevance. Nevertheless, due to the challenging synthetic conditions, essentially related to the stability of the N molecule, nitrides have remained largely unexplored compared with the corresponding oxides.The laser-heated diamond anvil cell (LH-DAC), providing access to the GPa pressure range and temperatures as high as several thousands of K, has dramatically changed the rules of the game, unveiling thermodynamic conditions in which N becomes unstable and polymerizes into extended crystalline phases. A variety of N-compounds have been indeed synthesized by laser-heating the corresponding elements in a N environment under high-pressure (HP) conditions.Nevertheless, only recently group 15 elements heavier than N have been targeted by this method, and excluding α-PN and γ-PN, crystalline pnictogen nitrides have remained essentially unknown.Since the discovery of phosphorene, while the quest for 2D materials has raised the interest for group 15 xenes and their N-doping as a key development, the inherent tendency of pnictogens to adopt crystalline layered structures persisting at high pressure has increased focus on binary N-compounds with heavier pnictogens, with implications for fundamental chemistry and potential applications.In this scenario, the discovery of the pseudo simple-cubic (p-sc) structure in the phase diagram of P, and, a few years later, the high-pressure-high-temperature (HP-HT) synthesis of PH from the elements and the discovery of the crystalline van der Waals (vdW) compound (PH)H have further reconnected the HP behavior of P to that of lighter N.These experimental studies, highlighting consistency in the structural and reactive properties of group 15 elements at high pressure, together with additional theoretical and computational insights, have opened new perspectives and motivated further investigations about the existence of crystalline pnictogen nitrides.Indeed, not only α- and γ-PN, but also three other crystalline polymorphs of phosphorus nitride (δ-PN, PN, and α'-PN), have been synthesized by the direct HP-HT chemical reaction of P and N in a LH-DAC.Moving down in group 15, the same method has led to the discovery of the first crystalline nitrides of arsenic (AsN) and antimony (SbN), whose existence has always represented an open question in inorganic chemistry, and to the structural characterization of two crystalline polymorphs of bismuth nitride (BiN).This Account provides an overview of the recent progress in the high-pressure and high-temperature synthesis of crystalline pnictogen nitrides, demonstrating the effective activation of a direct chemistry between N and heavier pnictogens. The presented results mark fundamental advancements in the chemistry of group 15 elements and pioneer the discovery of new advanced pnictogen-based materials of energetic and technological relevance, potentially recoverable under ambient conditions as stable or metastable systems.
概述
氮化物是一类具有高度科学和技术相关性的化合物。然而,由于合成条件具有挑战性,这主要与氮分子的稳定性有关,与相应的氧化物相比,氮化物在很大程度上仍未得到充分研究。激光加热金刚石砧室(LH-DAC)能够实现高达吉帕(GPa)的压力范围以及数千开尔文(K)的温度,极大地改变了这种局面,揭示了氮变得不稳定并聚合成扩展晶相的热力学条件。通过在高压(HP)条件下于氮环境中激光加热相应元素,确实已经合成了多种氮化合物。
然而,直到最近这种方法才将目标对准比氮重的第15族元素,并且除了α-PN和γ-PN之外,晶态的氮族元素氮化物基本上仍不为人所知。自磷烯被发现以来,对二维材料的探索激发了人们对第15族烯类及其氮掺杂作为关键发展方向的兴趣,氮族元素在高压下倾向于形成晶态层状结构的固有特性,使得人们更加关注与较重氮族元素形成的二元氮化合物,这对基础化学和潜在应用都有影响。在这种情况下,在磷的相图中发现了准简单立方(p-sc)结构,几年后又通过元素直接高压高温(HP-HT)合成了PH,并发现了晶态范德华(vdW)化合物(PH)H,这进一步将磷的高压行为与较轻的氮联系起来。
这些实验研究突出了第15族元素在高压下结构和反应性质的一致性,再加上其他理论和计算方面的见解,为晶态氮族元素氮化物的存在开辟了新的视角并激发了进一步的研究。事实上,通过在LH-DAC中磷和氮的直接HP-HT化学反应,不仅合成了α-PN和γ-PN,还合成了氮化磷的其他三种晶态多晶型物(δ-PN、PN和α'-PN)。沿着第15族元素向下,同样的方法导致发现了砷(AsN)和锑(SbN)的首批晶态氮化物,它们的存在在无机化学中一直是一个悬而未决的问题,还对氮化铋(BiN)的两种晶态多晶型物进行了结构表征。
本综述概述了晶态氮族元素氮化物在高压高温合成方面的最新进展,展示了氮与较重氮族元素之间直接化学反应的有效激活。所呈现的结果标志着第15族元素化学的重大进展,并开创了发现具有能量和技术相关性的新型先进氮族元素基材料的先河,这些材料在环境条件下有可能作为稳定或亚稳体系被回收。