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PATTERNING OF CERAMICS -SITE-SELECTIVE DEPOSITION OF CERAMIC THIN FILMS USING SELF-ASSEMBLED MONOLAYERS

机译:使用自组装单层陶瓷薄膜的陶瓷 - 选择性沉积陶瓷 - 选择性沉积

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Site-selective deposition (SSD) and nano/micropatterning of ceramic thin films were realized in the solutions using self-assembled monolayers(SAMs). The processes were developed based on scientific knowledge obtained from investigations of interactions and chemical reactions between functional groups of SAMs and ions, clusters and homogeneously nucleated particles in solutions. Several conceptual processes for SSD using SAMs as templates were proposed, and nano/micropatterns of ceramic thin films such as TiO_2, ZnO, Fe_3O_4, SrTiO_3, Ta_2O_5, SnO_2, ZrO_2, hydroxyapatite, etc. were successfully fabricated. Molecular recognition of SAMs was effectively used to achieve high site-selectivity. Our proposals and investigations will contribute to the development of SSD for the fabrication of nano/micropatterns of thin films. The studies showed the good performance of environment-friendly chemistry such as Green & Sustainable Chemistry for the fabrication of nano/micro ceramic devices.
机译:使用自组装单层(SAMS)在溶液中实现了陶瓷薄膜的站点选择性沉积(SSD)和纳米/微图案。该过程是基于从SAMS和离子,簇的官能团,簇和溶液中均匀核颗粒之间的相互作用和化学反应的研究获得的科学知识。提出了使用SAMS作为模板的SSD的几种概念过程,并且成功地制造了陶瓷薄膜的纳米/微图案,例如TiO_2,ZnO,Fe_3O_4,SrtiO_3,Ta_2O_5,SnO_2,ZrO_2,羟基磷灰石等。 SAMS的分子识别有效地用于实现高位选择性。我们的建议和调查将有助于开发SSD,用于制造薄膜的纳米/微图案。该研究表明,环保化学的良好性能,如绿色和可持续化学制造纳米/微陶瓷装置。

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