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N-Octadecane Encapsulated by Assembled BN/GO Aerogels for Highly Improved Thermal Conductivity and Energy Storage Capacity.
Hui, Siyue; Ji, Rong; Zhang, Huanzhi; Huang, Chaowei; Xu, Fen; Sun, Lixian; Xia, Yongpeng; Lin, Xiangcheng; Ma, Lei; Peng, Hongliang; Li, Bin; Wang, Yazhen; Yan, Erhu; Huang, Pengru.
Afiliação
  • Hui S; School of Material Science & Engineering, Guilin University of Electronic Technology, Guilin 541004, China.
  • Ji R; School of Material Science & Engineering, Guilin University of Electronic Technology, Guilin 541004, China.
  • Zhang H; School of Material Science & Engineering, Guilin University of Electronic Technology, Guilin 541004, China.
  • Huang C; Guangxi Key Laboratory of Information Materials, Guangxi Collaborative Innovation Center of Structure and Property for New Energy and Materials, Guilin University of Electronic Technology, Guilin 541004, China.
  • Xu F; School of Material Science & Engineering, Guilin University of Electronic Technology, Guilin 541004, China.
  • Sun L; School of Material Science & Engineering, Guilin University of Electronic Technology, Guilin 541004, China.
  • Xia Y; Guangxi Key Laboratory of Information Materials, Guangxi Collaborative Innovation Center of Structure and Property for New Energy and Materials, Guilin University of Electronic Technology, Guilin 541004, China.
  • Lin X; School of Material Science & Engineering, Guilin University of Electronic Technology, Guilin 541004, China.
  • Ma L; Guangxi Key Laboratory of Information Materials, Guangxi Collaborative Innovation Center of Structure and Property for New Energy and Materials, Guilin University of Electronic Technology, Guilin 541004, China.
  • Peng H; School of Material Science & Engineering, Guilin University of Electronic Technology, Guilin 541004, China.
  • Li B; Guangxi Key Laboratory of Information Materials, Guangxi Collaborative Innovation Center of Structure and Property for New Energy and Materials, Guilin University of Electronic Technology, Guilin 541004, China.
  • Wang Y; School of Material Science & Engineering, Guilin University of Electronic Technology, Guilin 541004, China.
  • Yan E; Guangxi Key Laboratory of Information Materials, Guangxi Collaborative Innovation Center of Structure and Property for New Energy and Materials, Guilin University of Electronic Technology, Guilin 541004, China.
  • Huang P; School of Material Science & Engineering, Guilin University of Electronic Technology, Guilin 541004, China.
Nanomaterials (Basel) ; 13(16)2023 Aug 12.
Article em En | MEDLINE | ID: mdl-37630901
ABSTRACT
The rapid development of industry has emphasized the importance of phase change materials (PCMs) with a high latent-heat storage capacity and good thermal stability in promoting sustainable energy solutions. However, the inherent low thermal conductivity and poor thermal-cycling stability of PCMs limit their application. In this study, we constructed three-dimensional (3D) hybrid graphene aerogels (GBA) based on synergistic assembly and cross-linking between GO and modified hexagonal boron nitride (h-BN). Highly thermally conductive GBA was utilized as the supporting optimal matrix for encapsulating OD, and further implied that composite matrix n-octadecane (OD)/GBA composite PCMs were further prepared by encapsulating OD within the GBA structure. Due to the highly thermally conductive network of GBA, the latent heat of the composite PCMs improved to 208.3 J/g, with negligible changes after 100 thermal cycles. In addition, the thermal conductivity of the composite PCMs was significantly enhanced to 1.444 W/(m·k), increasing by 738% compared to OD. These results sufficiently confirmed that the novel GBA with a well-defined porous structure served as PCMs with excellent comprehensive performance offer great potential for thermal energy storage applications.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Nanomaterials (Basel) Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Nanomaterials (Basel) Ano de publicação: 2023 Tipo de documento: Article