材料科学
吸附
共价有机骨架
吸附剂
水冷
太阳能
亚胺
热交换器
化学工程
蒸汽压缩制冷
光热治疗
工艺工程
催化作用
纳米技术
热力学
复合材料
有机化学
化学
多孔性
工程类
物理
生物
生态学
制冷剂
作者
Javier Pérez‐Carvajal,Gerard Boix,Inhar Imaz,Daniel Maspoch
标识
DOI:10.1002/aenm.201901535
摘要
Abstract Adsorption‐based cooling systems, which can be driven by waste heat and solar energy, are promising alternatives to conventional, compression‐based cooling systems, as they demand less energy and emit less CO 2 . The performance of adsorption‐based cooling systems relates directly to the performance of the working pairs (sorbent–water). Accordingly, improvement of these systems relies on the continual discovery of new sorbents that enable greater mass exchange while requiring less energy for regeneration. Here, it is proposed that covalent‐organic frameworks (COFs) can replace traditional sorbents for adsorption‐based cooling. In tests mimicking standard operating conditions for industry, the imine‐based COF TpPa‐1 exhibits a regeneration temperature below 65 °C and a cooling coefficient of performance of 0.77 – values which are comparable to those reported for the best metal–organic framework sorbents described to date. Moreover, TpPa‐1 exhibits a photothermal effect and can be regenerated by visible light, thereby opening the possibility for its use in solar‐driven cooling.
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