Controllable Growth of Unique Three-Dimensional Layered Basic Zinc Salt/ZnO Binary Structure

A novel three-dimensional binary structure was successfully synthesized with the assist of soluble long-chain tetra­alkyl­ammonium carboxylate zinc salt by hydrothermal treatment. The unique binary structure consists of two different crystal structures in one individual, with the head being a layere...

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Veröffentlicht in:Crystal growth & design 2016-09, Vol.16 (9), p.4877-4885
Hauptverfasser: Song, Bo, Cui, Xia, Wang, Yuqiao, Si, Lifang, Kou, Zhaoxia, Tian, Wenwen, Yi, Chang, Sun, Yueming
Format: Artikel
Sprache:eng
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Zusammenfassung:A novel three-dimensional binary structure was successfully synthesized with the assist of soluble long-chain tetra­alkyl­ammonium carboxylate zinc salt by hydrothermal treatment. The unique binary structure consists of two different crystal structures in one individual, with the head being a layered basic zinc salt (LBZS) microsphere and the body being a ZnO rod. During the synthesis process, careful concentration and time-controlled experiments were needed to achieve a key intermediate of stable self-assembled LBZS, which was subsequently converted into an LBZS/ZnO binary structure. The presence of the binary structure demonstrates a possible growth mechanism involving stepwise evolution as zinc salt → LBZS → LBZS/ZnO → ZnO, giving an improvement of the understanding of the growth of ZnO in solution. Thus, this study provides the rationality for the existence of the solid-phase transformation as well as the competition relationship between the solid-phase transformation and the dissolution–renucleation process during the transformation process of LBZS to ZnO.
ISSN:1528-7483
1528-7505
DOI:10.1021/acs.cgd.6b00340