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Bioinspired chemistry at MOF secondary building units

机译:Bioinspired Chemistry在MOF二级建筑单位

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The secondary building units (SBUs) in metal–organic frameworks (MOFs) support metal ions in well-defined and site-isolated coordination environments with ligand fields similar to those found in metalloenzymes. This burgeoning class of materials has accordingly been recognized as an attractive platform for metalloenzyme active site mimicry and biomimetic catalysis. Early progress in this area was slowed by challenges such as a limited range of hydrolytic stability and a relatively poor diversity of redox-active metals that could be incorporated into SBUs. However, recent progress with water-stable MOFs and the development of more sophisticated synthetic routes such as postsynthetic cation exchange have largely addressed these challenges. MOF SBUs are being leveraged to interrogate traditionally unstable intermediates and catalytic processes involving small gaseous molecules. This perspective describes recent advances in the use of metal centers within SBUs for biomimetic chemistry and discusses key future developments in this area.
机译:金属 - 有机框架(MOF)中的二级建筑单元(SBUS)在明确定义的和现场隔离的配位环境中支持金属离子,其配体场类似于在金属酶中发现的配体场。因此,这种新兴的材料阶级被认为是一种有吸引力的金属酶活性位点模拟和仿生催化的平台。该地区的早期进展被诸如有限的水解稳定性和氧化还原活性金属的相对较差的氧化还原活性金属的挑战来放缓。然而,最近利用水稳定的MOF和更复杂的合成路线的发展,如后阳离子交换的开发在很大程度上涉及这些挑战。 MOF SBUS正在利用以询问传统的不稳定中间体和涉及小气态分子的催化过程。这种观点介绍了在SBUS中使用金属中心的最新进展,用于仿生化学,并讨论该地区的关键未来发展。

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