1 |
Hydrophilic modification of carbon nanotube to prepare a novel porous copper network-carbon nanotube/erythritol composite phase change material Bao SY, Wei QP, Cao J, Li HC, Ma L, An JJ, Lin CT, Luo JT, Zhou KC Composite Interfaces, 28(2), 175, 2021 |
2 |
A state-of-the-art review of the application of phase change materials (PCM) in Mobilized-Thermal Energy Storage (M-TES) for recovering low-temperature industrial waste heat (IWH) for distributed heat supply Du K, Calautit J, Eames P, Wu YP Renewable Energy, 168, 1040, 2021 |
3 |
Characterization and effects of thermal cycling on the properties of paraffin/expanded graphite composites Wang QQ, Zhou D, Chen YM, Eames P, Wu ZG Renewable Energy, 147, 1131, 2020 |
4 |
A n-octadecane/hierarchically porous TiO2 form-stable PCM for thermal energy storage Li CE, Yu H, Song Y, Wang M, Liu ZY Renewable Energy, 145, 1465, 2020 |
5 |
Polysaccharide assisted microencapsulation for volatile phase change materials with a fluorescent retention indicator Zhang Y, Jiang Z, Zhang ZB, Ding YL, Yu QH, Li YL Chemical Engineering Journal, 359, 1234, 2019 |
6 |
Experimental study and performance analysis on solar photovoltaic panel integrated with phase change material Li ZP, Ma T, Zhao JX, Song AT, Cheng YD Energy, 178, 471, 2019 |
7 |
Experimental investigation of thermal performance of microencapsulated PCM-contained wallboard by two measurement modes Li CE, Yu H, Song Y Energy and Buildings, 184, 34, 2019 |
8 |
Benchmarking of useful phase change materials for a building application Navarro L, Sole A, Martin M, Barreneche C, Olivieri L, Tenorio JA, Cabeza LF Energy and Buildings, 182, 45, 2019 |
9 |
Development of a new methodology for validating thermal storage media: Application to phase change materials Bayon R, Rojas E International Journal of Energy Research, 43(12), 6521, 2019 |
10 |
Hybrid heat transfer enhancement for latent-heat thermal energy storage systems: A review Mandi JM, Lohrasbi S, Nsofor EC International Journal of Heat and Mass Transfer, 137, 630, 2019 |