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Time-resolved dissolution elucidates the mechanism of zeolite MFI crystallization (CROSBI ID 296390)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Bozhilov, Krassimir N. ; Le, Thuy Thanh ; Qin, Zhengxing ; Terlier, Tanguy ; Palčić, Ana ; Rimer, Jeffrey D. ; Valtchev, Valentin Time-resolved dissolution elucidates the mechanism of zeolite MFI crystallization // Science advances, 7 (2021), 25; eabg0454, 10. doi: 10.1126/sciadv.abg0454

Podaci o odgovornosti

Bozhilov, Krassimir N. ; Le, Thuy Thanh ; Qin, Zhengxing ; Terlier, Tanguy ; Palčić, Ana ; Rimer, Jeffrey D. ; Valtchev, Valentin

engleski

Time-resolved dissolution elucidates the mechanism of zeolite MFI crystallization

Zeolite crystal growth mechanisms are not fully elucidated owing to their complexity wherein the formation of a particular zeolite can occur by more than one crystallization pathway. Here, we have conducted time-resolved dissolution experiments of MFI-type zeolite crystals in ammonium fluoride medium where detailed structural analysis allowed us to extrapolate and elucidate the possible mechanism of nucleation and crystal growth. A combination of electron and scanning probe microscopy shows that dissolution initiates preferentially at lattice defects and progressively removes defect zones to reveal a mosaic structure of crystalline domains within each zeolite crystal. This mosaic architecture evolves during the growth process, reflecting the changing conditions of zeolite formation that can be retroactively assessed during zeolite crystal dissolution. Moreover, a more general implication of this study is the establishment that dissolution can be used successfully as an ex situ technique to uncover details about crystal growth features inaccessible by other methods.

zeolites ; nucleation ; dissolution ; crystallisation ; microscopy ; MFI-type zeolite

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Podaci o izdanju

7 (25)

2021.

eabg0454

10

objavljeno

2375-2548

10.1126/sciadv.abg0454

Povezanost rada

Kemija

Poveznice
Indeksiranost