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AuthorLiu, Yong
AuthorLan, Kun
AuthorLi, Shushuang
AuthorLiu, Yongmei
AuthorKong, Biao
AuthorWang, Geng
AuthorZhang, Pengfei
AuthorWang, Ruicong
AuthorHe, Haili
AuthorLing, Yun
AuthorAl-Enizi, Abdullah M.
AuthorElzatahry, Ahmed A.
AuthorCao, Yong
AuthorChen, Gang
AuthorZhao, Dongyuan
Available date2021-02-08T09:14:56Z
Publication Date2017
Publication NameJournal of the American Chemical Society
ResourceScopus
URIhttp://dx.doi.org/10.1021/jacs.6b11641
URIhttp://hdl.handle.net/10576/17648
AbstractConstructing three-dimensional (3-D) hierarchical mesostructures with unique morphology, pore orientation, single-crystal nature, and functionality remains a great challenge in materials science. Here, we report a confined microemulsion self-assembly approach to synthesize an unprecedented type of 3-D highly ordered mesoporous TiO2 superstructure (Level-1), which consists of 1 spherical core and 12 symmetric satellite hemispheres epitaxially growing out of the core vertices. A more complex and asymmetric TiO2 superstructure (Level-2) with 13 spherical cores and up to 44 symmetric satellite hemispheres can also be well manipulated by increasing the size or content of impregnated TiO2 precursor emulsion droplets. The obtained 3-D mesoporous TiO2 superstructures have well-defined bouquet-posy-like topologies, oriented hexagonal mesochannels, high accessible surface area (134-148 m2/g), large pore volume (0.48-0.51 cm3/g), and well single-crystalline anatase walls with dominant (001) active facets. More interestingly, all cylindrical mesopore channels are highly interconnected and radially distributed within the whole superstructures, and all TiO2 nanocrystal building blocks are oriented grown into a single-crystal anatase wall, making them ideal candidates for various applications ranging from catalysis to optoelectronics. As expected, the bouquet-posy-like mesoporous TiO2 superstructure supported catalysts show excellent catalytic activity (?99.7%) and selectivity (?96%) in cis-semihydrogenation of various alkynes, exceeding that of commercial TiO2 (P25) supported catalyst by a factor of 10. No decay in the activity was observed for 25 cycles, revealing a high stability of the mesoporous TiO2 superstructure supported catalyst.
SponsorThis work is supported by the State Key Basic Research Program of China (2013CB934104), National Science Foundation NSFC (21210004), and Science & Technology Commission of Shanghai Municipality (08DZ2270500), Shanghai Leading Academic Discipline Project (B108), and Deanship of Scientific Research, Deanship of Scientific Research, The authors extend their appreciation to the International Scientific Partnership Program ISPP at King Saud University for funding this research work through 1SPP# 0018, King Abdulaziz City for Science and Technology, Kingdom of Saudi Arabia, Award Research Project Number ADV1718-02, and Qatar University start-up grant no. QUSG-CAS-MST-14\15-1. Y.L. also acknowledges the China Postdoctoral Science Foundation (2015M580295) and International Postdoctoral Exchange Fellowship Program (No. 20160051).
Languageen
PublisherAmerican Chemical Society
TitleConstructing three-dimensional mesoporous bouquet-posy-like TiO2 superstructures with radially oriented mesochannels and single-crystal walls
TypeArticle
Pagination517-526
Issue Number1
Volume Number139


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