Li Bin, Lu Feng-Fan, Gu Xiao-Wen, Shao Kai, Wu Enyu, Qian Guodong
State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou, 310027, China.
Adv Sci (Weinh). 2022 Apr;9(11):e2105556. doi: 10.1002/advs.202105556. Epub 2022 Feb 11.
Developing efficient and stable water adsorbents for adsorption-driven heat transfer technology still remains a challenge due to the lack of efficient strategies to enhance low-pressure water uptakes. The authors herein demonstrate that the immobilization of Lewis basic nitrogen sites into metal-organic frameworks (MOFs) can improve water uptake and target benchmark coefficient of performances (COPs) for cooling and heating. They present the water sorption properties of a chemically stable MOF (termed as Zr-adip), designed by incorporating hydrophilic nitrogen sites into the adsorbent MIP-200. Zr-adip exhibits S-shaped sorption isotherms with an extremely high water uptake of 0.43 g g at 303 K and P/P = 0.25, higher than MIP-200 (0.39 g g ), KMF-1 (0.39 g g ) and MOF-303 (0.38 g g ). Theoretical calculations reveal that the incorporated N sites can serve as secondary adsorption sites to moderately interact with water, providing more binding sites to strengthen the water binding affinity. Zr-adip achieves exceptionally high COPs of 0.79 (cooling) and 1.75 (heating) with a low driving temperature of 70 °C, outperforming MIP-200 (0.78 and 1.53) and KMF-1 (0.75 and 1.74). Combined with its ultrahigh stability, excellent cycling performance, and easy regeneration, Zr-adip represents one of the best water adsorbents for adsorption-driven cooling and heating.
由于缺乏提高低压水吸附量的有效策略,开发用于吸附驱动传热技术的高效稳定的水吸附剂仍然是一项挑战。本文作者证明,将路易斯碱性氮位点固定到金属有机框架(MOF)中可以提高水吸附量,并达到冷却和加热的目标基准性能系数(COP)。他们展示了一种化学稳定的MOF(称为Zr-己二酸)的水吸附特性,该MOF是通过将亲水性氮位点引入吸附剂MIP-200中设计而成的。Zr-己二酸在303 K和P/P = 0.25时呈现S形吸附等温线,水吸附量极高,达到0.43 gg,高于MIP-200(0.39 gg)、KMF-1(0.39 gg)和MOF-303(0.38 gg)。理论计算表明,引入的N位点可作为二级吸附位点与水适度相互作用,提供更多结合位点以增强水结合亲和力。Zr-己二酸在70°C的低驱动温度下实现了0.79(冷却)和1.75(加热)的极高COP,优于MIP-200(0.78和1.53)和KMF-1(0.75和1.74)。结合其超高稳定性、出色的循环性能和易于再生的特点,Zr-己二酸是吸附驱动冷却和加热的最佳水吸附剂之一。