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首页> 外文期刊>Crystal growth & design >Control of Water Content for Enhancing the Quality of Copper Paddle-Wheel-Based Metal Organic Framework Thin Films Grown by Layer-by-Layer Liquid-Phase Epitaxy
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Control of Water Content for Enhancing the Quality of Copper Paddle-Wheel-Based Metal Organic Framework Thin Films Grown by Layer-by-Layer Liquid-Phase Epitaxy

机译:控制水含量以提高通过层逐层液相外延生长的铜桨式金属有机骨架薄膜质量

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摘要

Metal organic framework (MOF) thin films with high crystallinity, preferred orientation, homogeneous texture, and enhanced porous properties are desired to satisfy many practical applications. Surface mounted MOF crystallite thin films (SURMOFs), prepared via a stepwise liquid-phase epitaxy technique, have attracted great interest. Although many efforts have been devoted to this field, it still remains a significant challenge to prepare SURMOFs with high quality reproducibly in an efficient way. In the synthesis of MOF bulk materials, coordination modulators (normally are acids or bases) have been successfully used to improve the properties of obtained materials. However, non-neutral additives are too reactive for Cu paddle-wheel-based SURMOFs to survive. Introducing water as a mild additive to the growth process provides an efficient strategy for the growth of SURMOFs. Herein, the growth of three kinds of Cu paddle-wheel-based SURMOFs (Cu(3)btc(2), Cubdc, Cu(2)bdc(2)dabco) is systematically investigated by varying the water content in the linker solution during the stepwise liquid phase epitaxial growth process (btc = 1,3,5-benzentricarboxylate; bdc = 1,4-benzendedicarboxylate; dabco = 1,4-diazabicyclo[2.2.2]octane). Grazing incidence X-ray diffraction (GIXRD), scanning electron microscopy (SEM), methanol sorption behavior, and infrared reflection absorption spectroscopy (IRRAS) are employed to characterize the quality of as-deposited SURIVIOFs. The strategy of integrating water in the linker solution could provide a potentially versatile route for the fabrication of a wide range of MOF thin films with enhanced characteristics. The addition of 5% water turned out to yield dense, highly crystalline, oriented, and porous Cu(3)btc(2) SURMOFs, whereas water contents above 30% yielded less dense films with lower surface coverage. Above 70% water content SURMOF growth was no longer possible. Similar enhanced quality is found for Cubdc SURMOFs; however growth of Cu(2)bdc(
机译:金属有机框架(MOF)具有高结晶度,优选取向,均匀质地和增强的多孔特性的薄膜,以满足许多实际应用。通过逐步液相外延技术制备的表面安装MOF微晶薄膜(SURMOFS)吸引了极大的兴趣。虽然许多努力已经致力于这一领域,但在高质量的方式以有效的方式制备高质量的Surmofs仍然是一个重要的挑战。在合成MOF散装材料中,配合调节剂(通常是酸或碱)已成功地用于改善所得材料的性质。然而,非中性添加剂对于Cu桨轮 - 基轮的Surmofs来生存过于反应性。将水引入生长过程中的温和添加剂为Surmofs的生长提供了有效的策略。这里,通过改变接头溶液中的水含量,系统地研究了三种基于Cu桨轮基Surmofs(Cu(3)BTC(2),CubDC,Cu(2)BDC(2)Dabco)的生长逐步液相外延生长过程(BTC = 1,3,5-苯甲酸甲酯; BDC = 1,4-苯并二羧酸盐; DABCO = 1,4-二氮杂双环[2.2.2]辛烷值)。采用涂覆发射X射线衍射(GixRD),扫描电子显微镜(SEM),甲醇吸附行为和红外反射吸收光谱(IRRAS)来表征沉积的子宫的质量。在接头溶液中整合水的策略可以提供具有增强特性的各种MOF薄膜的潜在通用的途径。向加入5%的水来产生致密,高结晶,取向和多孔Cu(3)BTC(2)SURMOF,而高于30%的水含量含有较少的表面覆盖率的致密薄膜。高于70%的水含量含水含量,生长的含水量不再可能。 Cubdc Surmofs发现了类似的增强质量;然而,Cu(2)BDC的生长(

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  • 来源
    《Crystal growth & design》 |2018年第12期|共9页
  • 作者单位

    TUM Chair Inorgan &

    Met Organ Chem Dept Chem Lichtenbergstr 4 D-85748 Garching Germany;

    TUM Catalysis Res Ctr Lichtenbergstr 4 D-85748 Garching Germany;

    TUM Chair Inorgan &

    Met Organ Chem Dept Chem Lichtenbergstr 4 D-85748 Garching Germany;

    TUM Catalysis Res Ctr Lichtenbergstr 4 D-85748 Garching Germany;

    TUM Chair Inorgan &

    Met Organ Chem Dept Chem Lichtenbergstr 4 D-85748 Garching Germany;

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  • 正文语种 eng
  • 中图分类 晶体学;
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