Safari F, Tkacz M, Katrusiak A
Faculty of Chemistry, Adam Mickiewicz University, ul. Uniwersytetu Poznańskiego 8, 61-614 Poznań, Poland.
Institute of Physical Chemistry PAS, Kasprzaka 44/52, 01-224 Warszawa, Poland.
J Phys Chem C Nanomater Interfaces. 2021 Apr 15;125(14):7756-7762. doi: 10.1021/acs.jpcc.1c00138. Epub 2021 Mar 31.
Hydrogen sorption in urea C(NH)O has been probed by direct measurements in Sievert's apparatus at 7.23 and 11.12 MPa as well as by Raman spectroscopy for the sample compressed and heated in a high-pressure gas-loaded diamond-anvil cell up to 14 GPa. Both these methods consistently indicate the occurrence of small nonstoichiometric sorption of hydrogen in urea phase I. The compression of urea in hydrogen affects the Raman shifts of the C-N bending mode δ and the stretching mode υ. The sorption affects the H vibron position too. The sorption of 1.3 × 10 at 11.12 MPa corresponds to a stochastic distribution of H molecules in channel pores of urea. The mechanism leading to this stochastic sorption involves strong correlations between the swollen nanodot regions around the pores accommodating H molecules and the squeezed neighboring pores too narrow to act as possible sorption sites. This study on the hydrogen-bonded framework (HOF) of urea marks the smallest pores capable of absorbing hydrogen documented so far. This observation also reveals a new class of compounds, which is located between those that absorb large stoichiometric amounts of certain guest molecules and those that do not absorb them at all, namely, the group of compounds that absorb the guests in a stochastic manner.
通过在西韦特装置中于7.23和11.12兆帕下进行直接测量,以及对在高压气体加载金刚石对顶砧池中压缩并加热至14吉帕的样品进行拉曼光谱分析,对尿素C(NH)O中的氢吸附进行了探测。这两种方法均一致表明在尿素I相中存在少量非化学计量的氢吸附。在氢气中对尿素进行压缩会影响C-N弯曲模式δ和拉伸模式υ的拉曼位移。吸附也会影响H振子的位置。在11.12兆帕下吸附1.3×10相当于H分子在尿素通道孔中的随机分布。导致这种随机吸附的机制涉及容纳H分子的孔周围肿胀的纳米点区域与因过于狭窄而无法作为可能吸附位点的挤压相邻孔之间的强相关性。这项对尿素氢键框架(HOF)的研究标志着迄今为止记录的能够吸收氢的最小孔。这一观察结果还揭示了一类新的化合物,它们介于那些吸收大量化学计量特定客体分子的化合物和那些根本不吸收它们的化合物之间,即那些以随机方式吸收客体的化合物组。