Literature DB >> 20843080

Formation mechanism of CaTiO3 hollow crystals with different microstructures.

Xianfeng Yang1, Junxiang Fu, Chongjun Jin, Jian Chen, Chaolun Liang, Mingmei Wu, Wuzong Zhou.   

Abstract

The crystal growth of CaTiO(3) hollow crystals with different microstructures has been investigated. In a water-free poly(ethylene glycol) 200 (PEG-200) solution, CaTiO(3) nanocubes formed first. The nanocubes underwent an oriented self-assembly into spherical particles, enhanced by the surface-adsorbed polymer molecules. Since the growth of nanocubes and their aggregation took place simultaneously, the nanocubes in the outer shells were larger than those in the cores. Disappearance of the small nanocubes in the cores of the spheres during an Ostwald ripening process led to spherical hollow crystals. Addition of a small amount of water (1.25 vol %) in the polymer solution enhanced surface recrystallization of the aggregated spheres, forming a cubic morphology. The orthorhombic distortion of the perovskite CaTiO(3) structure did not have a significant effect on the nanocube aggregation, resulting in a domain structure in the shells. Single-crystalline hollow cubes were produced with a slightly higher water content, e.g., 5 vol %. This process of (1) aggregation of nanocubes and (2) surface crystallization followed by (3) surface-to-core extension of recrystallization gives a good example of the reversed crystal growth route in ceramic materials. The proposed formation mechanism of the hollow CaTiO(3) crystals would enable us to control the microstructures of these materials and to explain the formation of many other hollow crystals.

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Year:  2010        PMID: 20843080     DOI: 10.1021/ja106461u

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  6 in total

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Journal:  J Am Chem Soc       Date:  2012-02-24       Impact factor: 15.419

3.  Formation mechanism of Mn x Co3-x O4 yolk-shell structures.

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Journal:  RSC Adv       Date:  2021-09-01       Impact factor: 4.036

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Authors:  Daniela Meroni; Luca Porati; Francesco Demartin; Dirk Poelman
Journal:  ACS Omega       Date:  2017-08-28

5.  Mesoporous single-crystal CoSn(OH)6 hollow structures with multilevel interiors.

Authors:  Zhiyu Wang; Zichen Wang; Haobin Wu; Xiong Wen David Lou
Journal:  Sci Rep       Date:  2013       Impact factor: 4.379

6.  Reversed Crystal Growth of RHO Zeolitic Imidazolate Framework (ZIF).

Authors:  Katherine Self; Michael Telfer; Heather F Greer; Wuzong Zhou
Journal:  Chemistry       Date:  2015-11-18       Impact factor: 5.236

  6 in total

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