Ding Ning, Zhao Chaofeng, Zhang Jichuan, Du Yao, Sun Qi, Li Shenghua, Pang Siping
School of Materials Science & Engineering, Beijing Institute of Technology, Beijing, 100081, China.
Adv Sci (Weinh). 2025 Jan;12(1):e2409093. doi: 10.1002/advs.202409093. Epub 2024 Sep 27.
Despite the synthesis of numerous cationic metal-organic frameworks (CMOFs), their counter anions have been primarily limited to inorganic Cl, NO , ClO , BF , and CrO , which have weak coordination abilities. In this study, a series of new CMOFs is synthesized using azolates with strong coordination abilities as counter anions, which are exclusively employed as ligands for coordinating with metals. Owing to the unique nitrogen-rich composition of azolates, the CMOFs demonstrate significant potential as high-energy-density materials. Notably, CMOF(CuTNPO) has an exceptionally high heat of detonation of 7375 kJ kg, surpassing even that of the state-of-art CL-20 (6536 kJ kg). To further validate the advantages of employing azolates as counter anions, analogues with azolates serving as ligands are also synthesized. The comparison study indicates that encapsulating azolates within the cationic frameworks confers both high energy and safety properties. X-ray data and quantum calculations indicate that their enhanced performance stems from stronger H─bonds and π-π interactions. This study introduces new roles for azolates in MOFs and expands possibilities for structural diversity and potential applications of framework materials.
尽管已合成了众多阳离子金属有机框架材料(CMOFs),但其抗衡阴离子主要局限于配位能力较弱的无机Cl⁻、NO₃⁻、ClO₄⁻、BF₄⁻和CrO₄²⁻。在本研究中,一系列新型CMOFs以具有强配位能力的唑盐作为抗衡阴离子合成,这些唑盐专门用作与金属配位的配体。由于唑盐独特的富氮组成,CMOFs展现出作为高能量密度材料的巨大潜力。值得注意的是,CMOF(CuTNPO)的爆热极高,达7375 kJ/kg,甚至超过了最先进的CL - 20(6536 kJ/kg)。为进一步验证使用唑盐作为抗衡阴离子的优势,还合成了以唑盐作为配体的类似物。对比研究表明,将唑盐封装在阳离子框架内兼具高能量和安全性能。X射线数据和量子计算表明,它们性能的提升源于更强的氢键和π - π相互作用。本研究介绍了唑盐在金属有机框架中的新作用,并拓展了框架材料结构多样性和潜在应用的可能性。