纳米流体
材料科学
光热治疗
太阳能集热器中的纳米流体
太阳能
吸收(声学)
热的
化学工程
离子液体
纳米技术
纳米颗粒
复合材料
热力学
光电-热混合太阳能集热器
有机化学
生态学
物理
生物
工程类
化学
催化作用
作者
Fangfang Su,Jinliang Xie,Xiaoqian Li,Zhongjie He,Hongni Wang,Jing Zhang,Yangyang Xin,Aibo Zhang,Dongdong Yao,Yaping Zheng
标识
DOI:10.1021/acsami.2c22517
摘要
Solar energy, as renewable energy, has paid extensive attention for solar thermal utilization due to its unique characteristics such as rich resources, easy access, clean, and pollution-free. Among them, solar thermal utilization is the most extensive one. Nanofluid-based direct absorption solar collectors (DASCs), as an important alternative method, can further improve the solar thermal efficiency. Notably, the stability of photothermal conversion materials and flowing media is critical to the performance of DASC. Herein, we first proposed novel Ti3C2Tx-IL-based nanofluids by the electrostatic interaction, which consists of functional Ti3C2Tx modified with PDA and PEI as a photothermal conversion material and ionic liquid with low viscosity as the flow medium. Ti3C2Tx-IL-based nanofluids exhibit excellent cycle stability, wide spectrum, and efficient solar energy absorption performance. Besides, Ti3C2Tx-IL-based nanofluids maintain liquid state in a range of −80 to 200 °C, and its viscosity was as low as 0.3 Pa·s at 0 °C. Moreover, the equilibrium temperature of Ti3C2Tx@PDA-IL at a very low mass fraction of 0.04% reached 73.9 °C under 1 Sun, indicating an excellent photothermal conversion performance. Furthermore, the application of nanofluids in photosensitive inks has been preliminarily explored, which is expected to play a role in the fields of injectable biomedical materials and photo/electric double-generation thermal and hydrophobic anti ice coatings.
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