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Method for preparing visible light-responsive photocatalyst and visible light-responsive photocatalyst intermediate

机译:可见光响应型光催化剂的制备方法及可见光响应型光催化剂中间体

摘要

To provide a method for preparing a visible light-responsive photocatalyst and a visible light-responsive photocatalyst intermediate, a usage of a visible light-responsive photocatalyst, and the visible light-responsive photocatalyst, the method enabling arbitrary setting of the amount of solvent, thus making it possible to prepare composite fine particles of gold colloids and titanium oxide fine particles in high yield. A method for preparing a visible light-responsive photocatalyst or a visible light-responsive photocatalyst intermediate includes the step of forming a disperse system including an oil liquid containing an organic titanium complex as a dispersant, and an aqueous dispersion containing gold colloids as a dispersoid, and the visible light-responsive photocatalyst or the visible light-responsive photocatalyst intermediate enables the organic titanium complex to undergo hydrolysis to cause clathration of gold colloids, thus forming a clathrate.
机译:为了提供制备可见光响应性光催化剂和可见光响应性光催化剂中间体的方法,可见光响应性光催化剂的使用方法和可见光响应性光催化剂,该方法使得能够任意设定溶剂量,因此,可以高产率制备金胶体和氧化钛细颗粒的复合细颗粒。制备可见光响应性光催化剂或可见光响应性光催化剂中间体的方法包括形成分散体系的步骤,该分散体系包括含有有机钛配合物作为分散剂的油液和含有金胶体作为分散体的水分散体,可见光响应性光催化剂或可见光响应性光催化剂中间体使有机钛络合物发生水解,从而使金胶体形成包合物,从而形成包合物。

著录项

  • 公开/公告号US10040056B2

    专利类型

  • 公开/公告日2018-08-07

    原文格式PDF

  • 申请/专利权人 KANAGAWA UNIVERSITY;

    申请/专利号US201414120423

  • 发明设计人 KAZUO TAJIMA;YOKO IMAI;

    申请日2014-03-07

  • 分类号B01J23/52;B01J21/06;B01J35;B01J37/03;B01J37/04;B01J37/02;B01J37/08;B01J35/08;B01J19/12;B01J37/34;

  • 国家 US

  • 入库时间 2022-08-21 13:03:37

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