Sarkar Subhendu, Debnath Tanay, Das Abhijit K
School of Mathematical and Computational Sciences, Indian Association for the Cultivation of Science, Jadavpur, Kolkata, 700032, India.
Chemistry. 2024 May 17;30(28):e202304223. doi: 10.1002/chem.202304223. Epub 2024 Apr 4.
Superalkalis are unusual species having ionization energies lower than that of the alkali metals. These species with various applications are of great importance in chemistry due to their low ionization energies and strong reducing property. A typical superalkali contains a central electronegative core decorated with excess metal ligands. In the quest for novel superalkalis, we have designed the superalkalis HLi, HLiNa and HNa using hydrogen as central electronegative atom for the first time employing high level ab initio (CCSD(T), MP2) and density functional theory (ωB97X-D) methods. The superalkalis exhibit very low ionization energies, even lower than that of cesium. Stability of these species is verified from binding energy and dissociation energy values. The superalkalis are capable of reducing SO, NO, CO, CO and N molecules by forming stable ionic complexes and therefore can be used as catalysts for the reduction or activation of systems possessing very low electron affinities. The superalkalis form stable supersalts with tailored properties when interact with a superhalogen. They also show remarkably high non-linear optical responses, hence could have industrial applications. It is hoped that this work will enrich the superalkali family and spur further theoretical and experimental research in this direction.
超碱是一类特殊的物种,其电离能低于碱金属。这些具有多种应用的物种因其低电离能和强还原性在化学领域具有重要意义。典型的超碱包含一个被过量金属配体修饰的中心电负性核。在探索新型超碱的过程中,我们首次以氢作为中心电负性原子,采用高水平从头算(CCSD(T)、MP2)和密度泛函理论(ωB97X-D)方法设计了超碱HLi、HLiNa和HNa。这些超碱表现出极低的电离能,甚至低于铯的电离能。通过结合能和解离能值验证了这些物种的稳定性。超碱能够通过形成稳定的离子络合物来还原SO、NO、CO、CO和N分子,因此可作为催化剂用于还原或活化具有极低电子亲和能的体系。超碱与超卤素相互作用时会形成具有特定性质的稳定超盐。它们还表现出非常高的非线性光学响应,因此可能具有工业应用。希望这项工作能够丰富超碱家族,并推动该方向上进一步的理论和实验研究。