首页> 外文期刊>Journal of the American Chemical Society >Regulating Photochemical Selectivity with Temperature: Isobutanol on TiO_2(110)
【24h】

Regulating Photochemical Selectivity with Temperature: Isobutanol on TiO_2(110)

机译:用温度调节光化学选择性:TiO_2上的异丁醇(110)

获取原文
获取原文并翻译 | 示例
           

摘要

Selective photocatalytic transformations of chemicals derived from biomass, such as isobutanol, have been long envisioned for a sustainable chemical production. A strong temperature dependence in the reaction selectivity is found for isobutanol photo-oxidation on rutile TiO_2(110). The strong temperature dependence is attributed to competition between thermal desorption of the primary photoproduct and secondary photochemical steps. The aldehyde, isobutanal, is the primary photoproduct of isobutanol. At room temperature, isobutanal is obtained selectively from photo-oxidation because of rapid thermal desorption. In contrast, secondary photo-oxidation of isobutanal to propane dominates at lower temperature (240 K) due to the persistence of isobutanal on the surface after it is formed. The byproduct of isobutanal photo-oxidation is CO, which is evolved at higher temperature as a consequence of thermal decomposition of an intermediate, such as formate. The photo-oxidation to isobutanal proceeds after thermally induced isobutoxy formation. These results have strong implications for controlling the selectivity of photochemical processes more generally, in that, selectivity is governed by competition of desorption vs secondary photoreaction of products. This competition can be exploited to design photocatalytic processes to favor specific chemical transformations of organic molecules.
机译:为可持续化学生产长时间设想了从生物质(如异丁醇)的化学品的选择性光催化转变。在金红石TiO_2(110)上的异丁醇光氧化,发现了对反应选择性的强烈温度依赖性。强烈的温度依赖性归因于初级光调节和次级光化学步骤的热解吸之间的竞争。醛,异丁醛是异丁醇的初级光调节。在室温下,由于热解吸快速地,从光氧化中选择性地获得异脱石。相反,由于在形成后的表面上的异丁醛持续存在,异丁醛对丙烷的二次光氧化在较低温度(240k)下占主导地位。异丁醛光氧化的副产物是CO,其在较高的温度下在较高的温度下在中间体的热分解的结果中进化,例如甲酸盐。在热诱导的异丁酸形成后,光氧化在异丁醇形成后进行。这些结果对控制光化学过程的选择性更加强烈影响,从而通过对产品的解吸Vs次级光学反应来控制选择性。可以利用这种竞争来设计光催化过程,以利用有机分子的特定化学转化。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第30期|13072-13080|共9页
  • 作者单位

    Physical Chemistry & Catalysis Research Center Technical University of Munich 85748 Garching Germany;

    Department of Chemistry and Chemical Biology Harvard University Cambridge Massachusetts 02138 United States;

    Physical Chemistry & Catalysis Research Center Technical University of Munich 85748 Garching Germany;

    Physical Chemistry & Catalysis Research Center Technical University of Munich 85748 Garching Germany;

    Department of Chemistry and Chemical Biology Harvard University Cambridge Massachusetts 02138 United States;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号