Xia Xiaoxiao, Liu Boyun, Zhao Bo, Xia Zichao, Li Song
School of Energy and Power Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.
School of Power Engineering, Naval of University of Engineeing, Wuhan 430074, China.
Nanomaterials (Basel). 2023 Mar 23;13(7):1147. doi: 10.3390/nano13071147.
Metal-organic frameworks (MOFs) are one of the most promising adsorbents in the adsorption cooling system (ACS) for their outstanding water adsorption performance. Notwithstanding that fact, numerous reports pay more attention to the ACS performance improvement through enhancing equilibrium water uptake of MOFs. However, adsorption cooling performance, including specific cooling power (SCP) and coefficient of performance for cooling (COP) of MOF/water working pairs, always depends on the water adsorption kinetics of MOFs in ACS. In this work, to increase the water adsorption rate, the preparation of MOP/MIL-101(Cr) was achieved by encapsulating hydrophilic metal-organic polyhedral (MOP) into MIL-101(Cr). It was found that the hydrophilicity of MOP/MIL-101(Cr) was enhanced upon hydrophilic MOP encapsulation, resulting in a remarkable improvement in water adsorption rates. Furthermore, both SCP and COP for MOP/MIL-101(Cr)-water working pairs were also improved because of the fast water adsorption of MOP/MIL-101(Cr). In brief, an effective approach to enhance the water adsorption rate and cooling performance of MOF-water working pairs through enhancing the hydrophilicity of MOFs by encapsulating MOP into MOFs was reported in this work, which provides a new strategy for broadening the application of MOF composites in ACS.
金属有机框架材料(MOFs)因其出色的水吸附性能,成为吸附式制冷系统(ACS)中最具潜力的吸附剂之一。尽管如此,众多报道更多关注通过提高MOFs的平衡吸水量来改善ACS性能。然而,包括MOF/水工作对的比制冷量(SCP)和制冷性能系数(COP)在内的吸附式制冷性能,始终取决于MOFs在ACS中的水吸附动力学。在本研究中,为提高水吸附速率,通过将亲水性金属有机多面体(MOP)封装到MIL-101(Cr)中制备了MOP/MIL-101(Cr)。研究发现,封装亲水性MOP后,MOP/MIL-101(Cr)的亲水性增强,水吸附速率显著提高。此外,由于MOP/MIL-101(Cr)对水的快速吸附,MOP/MIL-101(Cr)-水工作对的SCP和COP也得到了提高。简而言之,本研究报道了一种通过将MOP封装到MOFs中来增强MOFs亲水性,从而提高MOF-水工作对水吸附速率和制冷性能的有效方法,为拓宽MOF复合材料在ACS中的应用提供了新策略。