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Understanding the anatase-rutile stability in flame-made TiO_2

机译:了解火焰制作的TiO_2中的锐钛矿粗糙度稳定性

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摘要

The relative stability of anatase and rutile in stagnation flame synthesis with stoichiometric mixtures is investigated experimentally. The measurements reveal a high sensitivity of anatase-rutile composition to the flame dilution. It is demonstrated that anatase formation is favoured in more dilute (colder) flames while rutile is favoured in less dilute (hotter) flames. A particle model with a detailed description of aggregate morphology and crystal phase composition is applied to investigate the anatase-rutile stability. A phase transformation model is implemented in which rutile is formed for particles larger than a "crossover" sizewhileanatase isformedforthosesmaller. Two formationmechanisms/pathwaysarediscussed and evaluated. In the first pathway, the nascent particles are assumed to be stoichiometric and the crossover size is determined solely by the surface free energy. This hypothesis captures the general trend in the measured anatase-rutile composition but fails to explain the sensitivity. In the second pathway, non-stoichiometric TiO2-x oxide intermediates are assumed and the crossover size is hypothesised to be composition-dependent. This shows an excellent agreement with the experimental data. However, this hypothesis is found to be strongly influenced by assumptions about the initial particle growth stages. This study demonstrates the importance of a better description of the high-temperature chemistry and initial clustering mechanism in order to understand the crystal phase formation. (C) 2020 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:实验研究了与化学计量混合物停滞气体合成中锐钛矿和金红石的相对稳定性。测量揭示了锐钛矿组合物与火焰稀释的高敏感性。证明锐钛矿形成在更稀释的(较冷的)火焰中有利于,而金红石在较少的稀释(更热)的火焰中有利。应用具有聚集形态和晶体相组合物的详细描述的粒子模型来研究锐钛矿粗糙度稳定性。实现了相变模型,其中形成了金红石,用于大于“交叉”尺寸的颗粒尺寸的颗粒。两个形成机制/途径态度和评估。在第一途径中,假设新粒子是化学计量的,并且交叉尺寸仅通过表面自由能来确定。该假设捕获了测量的锐钛矿金红石组合物中的一般趋势,但不能解释敏感性。在第二途径中,假设非化学计量TiO 2 -X氧化物中间体,并假设交叉尺寸以依赖于组成。这与实验数据显示出很好的一致性。然而,发现该假设受到初始颗粒生长阶段的假设受到强烈影响。本研究表明了更好地描述了高温化学和初始聚类机制的重要性,以了解晶体相形成。 (c)2020燃烧研究所。由elsevier Inc.保留所有权利发布。

著录项

  • 来源
    《Combustion and Flame》 |2021年第4期|347-361|共15页
  • 作者单位

    Univ Cambridge Dept Chem Engn & Biotechnol West Site Philippa Fawcett Dr Cambridge CB3 0AS England|Cambridge Ctr Adv Res & Educ Singapore CARES CREATE Tower 1 Create Way Singapore 138602 Singapore;

    Univ Cambridge Dept Chem Engn & Biotechnol West Site Philippa Fawcett Dr Cambridge CB3 0AS England|Cambridge Ctr Adv Res & Educ Singapore CARES CREATE Tower 1 Create Way Singapore 138602 Singapore;

    Univ Cambridge Dept Chem Engn & Biotechnol West Site Philippa Fawcett Dr Cambridge CB3 0AS England|Cambridge Ctr Adv Res & Educ Singapore CARES CREATE Tower 1 Create Way Singapore 138602 Singapore|Tech Univ Denmark Dept Chem & Biochem Engn CoaST Bldg 229 DK-2800 Lyngby Denmark;

    Univ Cambridge Dept Chem Engn & Biotechnol West Site Philippa Fawcett Dr Cambridge CB3 0AS England|Cambridge Ctr Adv Res & Educ Singapore CARES CREATE Tower 1 Create Way Singapore 138602 Singapore;

    Venator Titanium House Hanzard Dr Wynyard Pk Wynyard TS22 5FD England;

    Univ Cambridge Dept Chem Engn & Biotechnol West Site Philippa Fawcett Dr Cambridge CB3 0AS England|Cambridge Ctr Adv Res & Educ Singapore CARES CREATE Tower 1 Create Way Singapore 138602 Singapore|Technol Univ Sch Chem & Biomed Engn Nanyang 62 Nanyang Dr Singapore 637459 Singapore;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anatase; Rutile; Phase stability; Flame synthesis; Particle model;

    机译:锐钛矿;金红石;相位稳定性;火焰合成;粒子模型;

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