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Effect of porosity on the absorbed, reemitted and transmitted light by a geopolymer metakaolin base

机译:孔隙度对地质聚合物偏高岭土基质吸收,释放和透射光的影响

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摘要

In the present paper, the optical characterization of a geopolymer synthesized at three different temperatures (40, 60 and 90 ℃) is described. The results were correlated to the porosity fraction in order to obtain a photoluminescent geopolymer. A two-flux model was employed to relate the fraction of light absorbed, remitted and transmitted by a representative layer of geopolymer. Porosity was measured by nitrogen adsorption and correlated with the optical properties to determine the fraction of UV/Vis light transmitted through the samples. It was found that the geopolymer synthesize temperature and the incident wavelength greatly affect the fraction of light transmitted by the samples. The UV/Vis spectrum was divided into three zones according to the observed behavior. In the first zone, the difference in transmission fraction was significant; in the second zone, this difference decreased and practically vanished at the third one. Considering the highest transmission fraction at 90 ℃, a photoluminescent geopolymer with the strongest emitting peak at 469 nm was synthesized.
机译:在本文中,描述了在三种不同温度(40、60和90℃)下合成的地质聚合物的光学特性。将结果与孔隙率相关,以获得光致发光的地质聚合物。采用两通量模型来关联由代表性的地质聚合物层吸收,透射和透射的光的比例。通过氮吸附来测量孔隙率,并将其与光学性质相关联,以确定通过样品的紫外线/可见光的比例。发现地聚合物的合成温度和入射波长极大地影响了样品透射的光的比例。根据观察到的行为,UV / Vis光谱分为三个区域。在第一个区域中,透射率差异显着;在第二个区域中,这种差异减少了,在第三个区域中几乎消失了。考虑到90℃下的最高透射率,合成了在469 nm处发射峰最强的光致发光地质聚合物。

著录项

  • 来源
    《Materials Letters》 |2011年第5期|p.880-883|共4页
  • 作者单位

    Centra de Investigaciones y de Estudios Avanzados del I.P.N. Unidad Querttaro, Queretaro, Queretaro, CP. 76230, Mexico;

    Faculty of Civil Engineering, Universidad Michoacana de San Nicolas de Hidalgo, Morelia, Michoacdn, CP. 58000, Mexico,Postdoctoral position at Centro de Investigaciones y de Estudios Avanzados del I.P.N. Unidad Queretaro, Quer6to.ro, Queretaro, CP. 76230, Mexico;

    Centra de Investigaciones y de Estudios Avanzados del I.P.N. Unidad Querttaro, Queretaro, Queretaro, CP. 76230, Mexico;

    Centra de Investigaciones y de Estudios Avanzados del I.P.N. Unidad Querttaro, Queretaro, Queretaro, CP. 76230, Mexico;

    Postdoctoral position at Centro de Investigaciones y de Estudios Avanzados del I.P.N. Unidad Queretaro, Quer6to.ro, Queretaro, CP. 76230, Mexico;

    Centra de Investigaciones y de Estudios Avanzados del I.P.N. Unidad Querttaro, Queretaro, Queretaro, CP. 76230, Mexico;

    Universidad de Guanajuato. Campus Celaya-Salvatierra, Celaya, Guanajuato, CP. 38060, Mexico;

    Centro de Investigation y Desarrollo Tecnoldgico en Electroquimica, Parque Tecnoldgico Queretaro-San Fandila, CP. 76700, San Fandila, Pedro Escobedo, Queretaro, Mexico;

    Centro de Fisica Aplicada y Tecnologia Avanzada, Universidad National Autonoma de Mixico, A.P. 1-1010, Queretaro, Mexico;

    Instituto de Tecnologia de Materiales, Universidad Politecnica de Valencia. Camino de Vera, sin. CP. 46022, Valentia Spain;

  • 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

    Geopolymer; Metakaolin; Optical properties; Aluminosilicate; Photoluminescent;

    机译:地质聚合物;高岭土;光学性能;硅铝酸盐;光致发光;

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