Gwang-Jin Na, Jongha Hwang, Ryong Ryoo
A propane dehydrogenation (PDH) catalyst with 0.5 wt % Pt, 0.5 wt % Zn, and 2 wt % Ce was prepared by impregnating an aqueous solution of H 2 PtCl 6, Zn(NO 3 ) 2, and Ce(NO 3 ) 3 into a hierarchically microporous-mesoporous zeolite built with a siliceous MFI framework. The PtZnCe/zeolite exhibited a high catalytic performance for propane dehydrogenation to propylene, even at high space velocities. The catalyst could be calcined in air at 580 °C for regeneration without the risk of Pt agglomeration. Analyses using scanning transmission electron microscopy indicated that the high PDH performance came from 1:1 stoichiometric PtZn intermetallic compound-type alloy nanoparticles, which were dispersed on the surface of ceria islands confined in the zeolite mesopore. The mesopore-confined ceria effectively stabilized these nanoparticles through strong metal–support interactions, enabling high dispersion under severe reaction conditions.