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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Insights into the water adsorption mechanism in the chemically stable zirconium-based MOF DUT-67-a prospective material for adsorption-driven heat transformations
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Insights into the water adsorption mechanism in the chemically stable zirconium-based MOF DUT-67-a prospective material for adsorption-driven heat transformations

机译:基于化学稳定的锆的MOF DUT-67的水吸附机理 - 一种吸附驱动热变换的前瞻性材料

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摘要

A chemically and thermally stable MOF with composition Zr6O4(OH)(4)(tdc)(4)(CH3COO)(4) (tdc, 2,5-thiophenedicarboxylate), also known as DUT-67(Zr), was synthesised at the multigram scale using a green synthesis protocol as a potential material for adsorption heat pumps. A series of vapour physisorption experiments at 298 K identified water as the most promising working fluid, showing the desired S-shaped reversible physisorption isotherms with adsorption steps within the desired relative pressure range of p/p(0) = 0.1-0.4. An enhanced long-term chemical stability of the MOF was proved in liquid water and mineral acid and thermal stability was confirmed in temperature dependent PXRD experiments. Stable performance of the material under working conditions was confirmed in 20 adsorption/desorption cycles under conditions typical for an adsorption pump. The mechanism of water adsorption was further studied by neutron powder diffraction, suggesting that the preferable adsorption sites for water are near the (3)-O and (3)-OH groups of the Zr6O8 cluster and the triangular window of the octahedral micropore, and the order of pore filling starts from the smallest pore, progressing to the middle and largest pore.
机译:用组合物Zr6O4(OH)(4)(4)(4)(TDC)(4)(4)(CH 3 COO)(4)(TDC,2,5-噻吩二羧酸甲酯)的化学和热稳定的MOF合成,也称为DUT-67(Zr),使用绿色合成方案作为吸附热泵的潜在材料的多精矩量。在298K的一系列蒸汽理化实验中确定了水作为最有前途的工作流体,显示出在P / P(0)= 0.1-0.4的所需相对压力范围内的吸附步骤的所需的S形可逆物质吸水。在液态水和无机酸中证明了MOF的增强的长期化学稳定性,在温度依赖性PXRD实验中确认了热稳定性。在吸附泵的典型条件下,在20个吸附/解吸循环中确认了在工作条件下的稳定性能。通过中子粉衍射进一步研究了水吸附机理,表明水的优选吸附位点在Zr6O8簇的(3)-O和(3)核和(3)-OH基团附近和八角体微孔的三角形窗口,毛孔填充的顺序从最小的孔隙开始,进入中间和最大孔隙。

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