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Hierarchical nanofabrication of microporous crystals with ordered mesoporosity

Authors
Fan, WeiSnyder, Mark A.Kumar, SandeepLee, Pyung-SooYoo, Won CheolMcCormick, Alon V.Penn, R. LeeStein, AndreasTsapatsis, Michael
Issue Date
Dec-2008
Publisher
NATURE PUBLISHING GROUP
Citation
NATURE MATERIALS, v.7, no.12, pp 984 - 991
Pages
8
Journal Title
NATURE MATERIALS
Volume
7
Number
12
Start Page
984
End Page
991
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/58433
DOI
10.1038/nmat2302
ISSN
1476-1122
1476-4660
Abstract
Shaped zeolite nanocrystals and larger zeolite particles with three-dimensionally ordered mesoporous (3DOm) features hold exciting technological implications for manufacturing thin, oriented molecular sieve films and realizing new selective, molecularly accessible and robust catalysts. A recognized means for controlled synthesis of such nanoparticulate and imprinted materials revolves around templating approaches, yet identification of an appropriately versatile template has remained elusive. Because of their highly interconnected pore space, ordered mesoporous carbon replicas serve as conceptually attractive materials for carrying out confined synthesis of zeolite crystals. Here, we demonstrate how a wide range of crystal morphologies can be realized through such confined growth within 3DOm carbon, synthesized by replication of colloidal crystals composed of size-tunable (about 10-40 nm) silica nanoparticles. Confined crystal growth within these templates leads to size-tunable, uniformly shaped silicalite-1 nanocrystals as well as 3DOm-imprinted single-crystal zeolite particles. In addition, novel crystal morphologies, consisting of faceted crystal outgrowths from primary crystalline particles have been discovered, providing new insight into constricted crystal growth mechanisms underlying confined synthesis.
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Lee, Pyung Soo
대학원 (지능형에너지산업융합학과)
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