首页> 外文期刊>Journal of Oleo Science >Microwave-/UV-assisted Enhancement of the Wettability of Photoactive TiO_2 Substrates Coated on an Inactive Ti/i-TiO_2 Base
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Microwave-/UV-assisted Enhancement of the Wettability of Photoactive TiO_2 Substrates Coated on an Inactive Ti/i-TiO_2 Base

机译:微波/紫外线辅助增强了在无活性Ti / i-TiO_2基底上涂覆的光敏性TiO_2基材的润湿性

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摘要

Titanium dioxide (TiO_2) has been proven to be an excellent system for wettability patterning purposes because of its super hydrophilic ability and its oxidative/reductive degradation of substances when exposed to UV radiation. TiO_2 substrates upon which was deposited a self-assembled monolayer (SAM) of n-octadecyltrimethoxysilane (ODS) shifts the surface to become super hydrophobic, which when subjected to UV irradiation causes the ODS compound to be degraded with the substrate turning back to be super hydrophilic. Such events allow wettability patterns to be easily created. The objective of this study was to reduce the time required to construct a wettability pattern. For this purpose, highly photoactive TiO_2 nanoparticles were coated onto a titanium plate whose surface had been previously oxidized at high temperatures in an electric furnace. The subsequent TiO_2/Ti system was microwaved and simultaneously irradiated with ultraviolet light (UV) to further accelerate its photocatalytic activity. Using a set of photomasks and both UV and microwave irradiation, the generation of a pattern was achieved 15 times faster (2 min versus 30 min) compared to an earlier result that used only UV radiation.
机译:二氧化钛(TiO_2)由于具有超强的亲水性,并且在暴露于紫外线辐射时会发生氧化/还原性降解,因此已被证明是用于润湿性图案形成的出色系统。沉积有正十八烷基三甲氧基硅烷(ODS)的自组装单分子层(SAM)的TiO_2基材使表面转变为超疏水性,这在受到紫外线照射时会导致ODS化合物降解,而基材又变成超疏水性亲水的。这样的事件使得容易产生润湿性模式。这项研究的目的是减少构建润湿性模型所需的时间。为此,将高度光敏性的TiO_2纳米颗粒涂覆到钛板上,该钛板的表面事先已在电炉中高温氧化。将随后的TiO_2 / Ti体系进行微波处理,并同时用紫外线(UV)照射,以进一步加速其光催化活性。与仅使用紫外线辐射的早期结果相比,使用一组光掩模以及紫外线和微波辐射,图案的生成速度提高了15倍(2分钟比30分钟)。

著录项

  • 来源
    《Journal of Oleo Science》 |2019年第10期|967-975|共9页
  • 作者单位

    Department of Materials and Life Sciences Faculty of Science and Technology Sophia University 7-1 Kioicho Chiyodaku Tokyo 102-8554 JAPAN Photocatalytic International Research Center Research Institute of Science and Technology Tokyo University of Science 2641 Yamazaki Noda Chiba 278-0022 JAPAN;

    Photocatalytic International Research Center Research Institute of Science and Technology Tokyo University of Science 2641 Yamazaki Noda Chiba 278-0022 JAPAN Graduate School of Bio-Applications and Systems Engineering Tokyo University of Agriculture and Technology 2-24-16 Nakacho Koganei Tokyo 184-0012 JAPAN;

    PhotoGreen Laboratory Dipartimento di Chimica Universita di Pavia Via Taramelli 12 Pavia 27100 ITALIA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    TiO_2; wettability pattern; offset printing; cell microarray; bio-adhesion; microwave radiation;

    机译:TiO_2;润湿性胶印;细胞微阵列生物粘附微波辐射;

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