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金属有机框架上的金属有机框架生长:诱导天然非优选的金属有机框架和非典型金属有机框架生长。

MOF-on-MOF Growth: Inducing Naturally Nonpreferred MOFs and Atypical MOF Growth.

作者信息

Lee Sujeong, Lee Gihyun, Oh Moonhyun

机构信息

Department of Chemistry, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 03722, Republic of Korea.

出版信息

Acc Chem Res. 2024 Nov 5;57(21):3113-3125. doi: 10.1021/acs.accounts.4c00469. Epub 2024 Oct 10.

DOI:10.1021/acs.accounts.4c00469
PMID:39388366
Abstract

ConspectusOverflowing metal-organic frameworks (MOFs) have been synthesized from a wide range of metal and organic components for specific purposes and intellectual curiosity. Each MOF has unique chemical and structural characteristics directed by the incorporated components, metal ions (or clusters), organic linkers, and their intrinsic coordination interactions. These incorporated components and structural characteristics are two pivotal factors influencing MOFs' fundamental properties and subsequent applications. Therefore, selecting the appropriate metal and organic components, considering their innate chemical and structural properties, is crucial to endow the final MOFs with the desired properties. Ultimately, producing MOFs with a desired structure using ideal components is the best approach to achieving the best MOFs tailored for specific purposes with desired properties. However, achieving MOFs with the intended structure from chosen components remains underdeveloped. In many cases, the resulting MOF structure is governed by the thermodynamically and/or kinetically preferred configuration (refers to a naturally preferred structure) of the chosen components and given reaction conditions. Additionally, producing hybrid MOFs with complex components, structures, and morphologies presents a great opportunity to obtain special MOFs with advanced properties and functions. In this Account, we outline our group's efforts over the past few years to develop naturally nonpreferred MOFs through the induced MOF-on-MOF growth process and atypical hybrid MOFs via nonstandard MOF-on-MOF growth. First, we highlight the prime strategy for producing naturally nonpreferred MOFs based on template-induced MOF-on-MOF growth. In this section, we discuss the two basic growth behaviors, isotropic and anisotropic growth of naturally nonpreferred MOFs, determined by the degree of matching between the cell lattices of the two MOFs. Second, we introduce the MOF farming concept for the productive cultivation and effective harvesting of naturally nonpreferred MOFs made by MOF-on-MOF growth. Here we discuss the importance of selecting the ideal MOF template for productive growth and developing an efficient method for harvesting cultivated MOFs. Next, we describe atypical anisotropic MOF-on-MOF growths between two MOFs with mismatched cell lattices. In this section, we introduce tip-to-middle MOF-on-MOF growth involving self-structural adjustment of the secondary MOF, logical inference of unidentified MOF structures based on MOF-on-MOF growth behavior and morphological features, and MOF-on-MOF growth accompanied by etching and transformation of the template. Finally, we discuss the perspectives and challenges of MOF-on-MOF growth and the synthesis of naturally nonpreferred MOFs. We hope that this Account offers valuable insights into the rational design and development of MOFs with desired structural and compositional characteristics, leading to the creation of ideal MOFs.

摘要

综述

为了特定目的和出于求知欲,人们已利用多种金属和有机成分合成了大量的金属有机框架材料(MOF)。每个MOF都具有独特的化学和结构特征,这些特征由所含成分、金属离子(或簇)、有机连接体及其内在的配位相互作用所决定。这些所含成分和结构特征是影响MOF基本性质及后续应用的两个关键因素。因此,考虑到其固有的化学和结构性质,选择合适的金属和有机成分对于赋予最终的MOF所需性质至关重要。最终,使用理想成分制备具有所需结构的MOF是获得针对特定目的且具有所需性质的最佳MOF的最佳方法。然而,从所选成分获得具有预期结构的MOF仍未得到充分发展。在许多情况下,所得MOF结构由所选成分的热力学和/或动力学优选构型(指自然优选结构)以及给定的反应条件所决定。此外,制备具有复杂成分、结构和形态的杂化MOF为获得具有先进性质和功能的特殊MOF提供了巨大机会。在本综述中,我们概述了我们小组在过去几年中通过诱导MOF-on-MOF生长过程开发天然非优选MOF以及通过非标准MOF-on-MOF生长制备非典型杂化MOF的努力。首先,我们强调基于模板诱导的MOF-on-MOF生长制备天然非优选MOF的主要策略。在本节中,我们讨论了由两种MOF的晶格匹配程度决定的天然非优选MOF的两种基本生长行为,即各向同性生长和各向异性生长。其次,我们引入了MOF培育概念,用于通过MOF-on-MOF生长对天然非优选MOF进行高效培养和有效收获。在此,我们讨论了选择理想的MOF模板以实现高效生长以及开发一种有效方法来收获培养的MOF的重要性。接下来,我们描述了两种晶格不匹配的MOF之间的非典型各向异性MOF-on-MOF生长。在本节中,我们介绍了涉及二级MOF自结构调整的尖端到中间的MOF-on-MOF生长、基于MOF-on-MOF生长行为和形态特征对未鉴定MOF结构的逻辑推断以及伴随模板蚀刻和转变的MOF-on-MOF生长。最后,我们讨论了MOF-on-MOF生长以及天然非优选MOF合成的前景和挑战。我们希望本综述能为合理设计和开发具有所需结构和组成特征的MOF提供有价值的见解,从而促成理想MOF的创造。

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