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首页> 外文期刊>Angewandte Chemie >Hydrophobic Shielding of Outer Surface: Enhancing the Chemical Stability of Metal-Organic Polyhedra
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Hydrophobic Shielding of Outer Surface: Enhancing the Chemical Stability of Metal-Organic Polyhedra

机译:外表面的疏水屏蔽:提高金属 - 有机多面体的化学稳定性

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摘要

Metal-organic polyhedra (MOP) are a promising class of crystalline porous materials with multifarious potential applications. Although MOPs and metal-organic frameworks (MOFs) have similar potential in terms of their intrinsic porosities and physicochemical properties, the exploitation of carboxylate MOPs is still rudimentary because of the lack of systematic development addressing their chemical stability. Herein we describe the fabrication of chemically robust carboxylate MOPs via outer-surface functionalization as an a priori methodology, to stabilize those MOPs system where metal-ligand bond is not so strong. Fine-tuning of hydrophobic shielding is key to attaining chemical inertness with retention of the framework integrity over a wide range of pH values, in strong acidic conditions, and in oxidizing and reducing media. These results are further corroborated by molecular modelling studies. Owing to the unprecedented transition from instability to a chemically ultra-stable regime using a rapid ambient-temperature gram-scale synthesis (within seconds), a prototype strategy towards chemically stable MOPs is reported.
机译:金属有机多面体(MOP)是一类有前途的结晶多孔材料,具有多种潜在的应用。虽然拖把和金属 - 有机框架(MOF)在其内在孔隙和物理化学性质方面具有相似的潜力,但羧酸橡箱的开采仍然是基本的,因为缺乏解决它们的化学稳定性的系统发展。在此,我们描述了通过外表面官能化作为先验方法的化学鲁棒羧酸碳酸锰摩擦的制造,以稳定那些金属配体键并不是如此强的拖把系统。疏水性屏蔽的微调是在宽范围的pH值中保持框架完整性,在强酸性条件下以及氧化和还原培养基中保持骨灰屏蔽的微调。通过分子建模研究进一步证实了这些结果。由于使用快速环境温度革兰级合成(在几秒钟内)从不稳定性到化学上超稳定的制度,报道了朝向化学稳定摩托的原型策略。

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