聚氨酯
焓
热致变色
材料科学
相变
复合材料
相(物质)
相变材料
热力学
化学
有机化学
物理
作者
Yulong Zou,Jun Gao,Chengdong Su,Shuang Ji,Yinghao Zhang,Weihua Qiu,Lei Yuan
标识
DOI:10.1021/acs.iecr.5c02611
摘要
Addressing the global demand for energy efficiency and sustainability, this study designed novel, high-performance, intelligent thermochromic cross-linked polyurethane-encapsulated tetradecanol phase-change composites (TC-PU/TDs). These materials aim to overcome the limitations of traditional phase-change materials (PCMs) like low phase-change enthalpy and leakage while enabling visual monitoring of thermal energy utilization. We first prepared SP-NO 2 /OH, a dihydroxyl and dinitro-modified thermochromic molecule. Subsequently, SP-NO 2 /OH, along with xylitol as a chain extender, was incorporated into a poly(ethylene glycol)-based prepolymer, forming crystallizable solid–solid thermochromic phase-change polyurethanes (ssTC-PUs). High-enthalpy tetradecanol (TD) was then encapsulated within this network, resulting in TC-PU/TDs, shape-stabilized composite materials with dual phase-change components. TC-PU/TDs exhibit excellent structural stability, shape retention, phase-change stability, and thermochromic repeatability. Through the optimization of the cross-linked network structure, the encapsulation rate of TD reached an impressive value of 72%, and the melting enthalpy achieved 159.7 J/g with an enthalpy efficiency of 87.2%. Exploratory applications confirmed the outstanding thermal energy absorption/release of TC-PU/TDs in industrial wastewater heat recovery, with color changes intuitively reflecting the thermal state. This study provides an innovative strategy for intelligent thermal management and energy visualization monitoring, showcasing broad application prospects.
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