Center for Programmable Materials, School of Materials Science and Engineering, Nanyang Technological University, Singapore, Singapore.
Department of Chemistry, School of Science, Tianjin University, Tianjin, China.
Nat Chem. 2018 Jun;10(6):638-643. doi: 10.1038/s41557-018-0035-6. Epub 2018 Apr 2.
Phase control plays an important role in the precise synthesis of inorganic materials, as the phase structure has a profound influence on properties such as conductivity and chemical stability. Phase-controlled preparation has been challenging for the metallic-phase group-VI transition metal dichalcogenides (the transition metals are Mo and W, and the chalcogens are S, Se and Te), which show better performance in electrocatalysis than their semiconducting counterparts. Here, we report the large-scale preparation of micrometre-sized metallic-phase 1T'-MoX (X = S, Se)-layered bulk crystals in high purity. We reveal that 1T'-MoS crystals feature a distorted octahedral coordination structure and are convertible to 2H-MoS following thermal annealing or laser irradiation. Electrochemical measurements show that the basal plane of 1T'-MoS is much more active than that of 2H-MoS for the electrocatalytic hydrogen evolution reaction in an acidic medium.
相控制在无机材料的精确合成中起着重要作用,因为相结构对电导率和化学稳定性等性质有深远的影响。对于金属相第六族过渡金属二卤化物(过渡金属为 Mo 和 W,卤族元素为 S、Se 和 Te)来说,相控制的制备具有挑战性,因为它们在电催化方面的性能优于其半导体对应物。在这里,我们报告了在高纯度下大规模制备微米级金属相 1T'-MoX(X = S、Se)层状块状晶体。我们揭示了 1T'-MoS 晶体具有扭曲的八面体配位结构,并可在热退火或激光辐照下转化为 2H-MoS。电化学测量表明,在酸性介质中,1T'-MoS 的基面对于电催化析氢反应比 2H-MoS 更活跃。