Abstract Phase change materials (PCMs) can be used for efficient thermal energy harvesting, which has great potential for cost-effective thermal management and energy storage. However, the low intrinsic thermal conductivity of polymeric PCMs is a bottleneck for fast and efficient heat harvesting. Simultaneously, it is also a challenge to achieve a high thermal conductivity for phase change nanocomposites at low filler loading. Although constructing a three-dimensional (3D) thermally conductive network within PCMs can address these problems, the anisotropy of the 3D framework usually leads to poor thermal conductivity in the direction perpendicular to the alignment of fillers. Inspired by the interlaced structure of spider webs in nature, th...
Graphene oxide (GO)/boron nitride (BN) hybrid porous scaffolds (HPSs) with the optimally three-dimen...
© 2016 Elsevier Ltd Increased energy consumption in buildings is a worldwide issue. This research is...
The thermal conductivity of expanded graphite plate (EGP) and/or multi-wall carbon nanotube (MWCNT)-...
We report results concerning the functionalization of graphene-based nanoplatelets for improving the...
For thermophysical energy storage with phase change materials (PCMs), the power capacity is often li...
The porous interconnected structure of three-dimensional graphene (3DC) combines the excellent therm...
Organic phase change materials (PCMs) have been utilized as latent heat energy storage and release m...
Organic phase change materials (PCMs) have been utilized as latent heat energy storage and release m...
Phase change materials (PCMs) are regarded as promising candidates for realizing zero-energy thermal...
In recent years, graphene has been introduced into phase change materials (PCMs) to improve thermal ...
Organic phase change materials are usually insulating in nature, and they are unlikely to directly t...
Common phase change materials (PCMs) possess very low thermal conductivity whilst hybrid PCM with gr...
Phase transition is a natural phenomenon happened around our daily life, represented by the process ...
Phase change material (PCM) with thermal energy storage capacity has been a hot topic due to the adv...
Phase change materials (PCMs) have the ability to store thermal energy as latent heat over a nearly ...
Graphene oxide (GO)/boron nitride (BN) hybrid porous scaffolds (HPSs) with the optimally three-dimen...
© 2016 Elsevier Ltd Increased energy consumption in buildings is a worldwide issue. This research is...
The thermal conductivity of expanded graphite plate (EGP) and/or multi-wall carbon nanotube (MWCNT)-...
We report results concerning the functionalization of graphene-based nanoplatelets for improving the...
For thermophysical energy storage with phase change materials (PCMs), the power capacity is often li...
The porous interconnected structure of three-dimensional graphene (3DC) combines the excellent therm...
Organic phase change materials (PCMs) have been utilized as latent heat energy storage and release m...
Organic phase change materials (PCMs) have been utilized as latent heat energy storage and release m...
Phase change materials (PCMs) are regarded as promising candidates for realizing zero-energy thermal...
In recent years, graphene has been introduced into phase change materials (PCMs) to improve thermal ...
Organic phase change materials are usually insulating in nature, and they are unlikely to directly t...
Common phase change materials (PCMs) possess very low thermal conductivity whilst hybrid PCM with gr...
Phase transition is a natural phenomenon happened around our daily life, represented by the process ...
Phase change material (PCM) with thermal energy storage capacity has been a hot topic due to the adv...
Phase change materials (PCMs) have the ability to store thermal energy as latent heat over a nearly ...
Graphene oxide (GO)/boron nitride (BN) hybrid porous scaffolds (HPSs) with the optimally three-dimen...
© 2016 Elsevier Ltd Increased energy consumption in buildings is a worldwide issue. This research is...
The thermal conductivity of expanded graphite plate (EGP) and/or multi-wall carbon nanotube (MWCNT)-...