Novel Montmorillonite/Mos2 Hybrid Aerogel Encapsulated Peg as Composite Phase Change Materials with Superior Solar-Thermal Energy Harvesting and Storage

37 Pages Posted: 10 Mar 2024

See all articles by Qijing Guo

Qijing Guo

Wuhan University of Technology

Hao Yi

Wuhan University of Technology

Feifei Jia

Wuhan University of Technology

Shaoxian Song

Wuhan University of Technology

Abstract

Phase change materials (PCMs) offer significant advantages in energy conversion and storage by facilitating the storage and release of thermal energy during phase transition processes. However, challenges such as leakage during PCM phase transitions and poor light absorption properties have constrained their application in the field of photothermal energy storage. In this study, Montmorillonite (Mt) and molybdenum disulfide (MoS2) has been used to design and synthesize hybrid aerogels (MoS2/Mt) boasting high mechanical strength and excellent photothermal conversion performance. These aerogels are then used to encapsulate polyethylene glycol (PEG) to prepare composite phase change materials with outstanding solar-thermal conversion and storage performances. The results show that the synthesized MoS2/Mt-PEG composite PCMs exhibit high enthalpies of melting and solidification of 169.16 J/g and 170.78 J/g, respectively, while the aerogel supporting material has a high compressive modulus of 1.96 MPa. Moreover, the composite material displayed excellent thermal stability and leakage resistance after undergoing 30 melting-cooling cycles. Furthermore, the incorporation of MoS2 imparted outstanding light absorption properties to the MoS2/Mt-PEG composite, resulting in a high light absorption and photothermal conversion-storage efficiency of 93.4% and 96.47%, respectively. Synthesized composite PCMs also demonstrate outstanding performance in solar-thermal-electricity conversion, achieving a voltage output of 458mV under illumination conditions and maintaining a sustainable voltage output even after removing the light source. Thus, the composite PCMs prepared in this work can meet the requirements of high enthalpy, effective leakage prevention, efficient solar-thermal conversion and solar-thermal-electricity conversion performance, thereby presenting potential applications in practical solar energy collection, conversion, and storage.

Keywords: Phase change materials, Solar-thermal conversion and storage, solar-thermal-electricity conversion

Suggested Citation

Guo, Qijing and Yi, Hao and Jia, Feifei and Song, Shaoxian, Novel Montmorillonite/Mos2 Hybrid Aerogel Encapsulated Peg as Composite Phase Change Materials with Superior Solar-Thermal Energy Harvesting and Storage. Available at SSRN: https://ssrn.com/abstract=4754110 or http://dx.doi.org/10.2139/ssrn.4754110

Qijing Guo

Wuhan University of Technology ( email )

Wuhan
China

Hao Yi (Contact Author)

Wuhan University of Technology ( email )

Wuhan
China

Feifei Jia

Wuhan University of Technology ( email )

Wuhan
China

Shaoxian Song

Wuhan University of Technology ( email )

Wuhan
China

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