Qin Gong, Yuang Zhang, Shufen Zhang, Rongwen Lu, Bingtao Tang
/g. Its unique hierarchically porous structure enables stable 77 wt % PEG loading under atmospheric-pressure conditions, eliminating the strong dependence on time-consuming vacuum impregnation methods that typically exists for PCM loading in porous carbon matrices. Crucially, the composite PCM with 25 wt % HPHCS demonstrated a 116% enhancement in thermal conductivity compared to pure PEG10000. The unique hollow hierarchical architecture of HPHCS ensured exceptional encapsulation integrity for PEG, with thermal properties and microscopic morphology remaining essentially unchanged after 100 thermal cycles. The composite PCM exhibits excellent broadband light absorption and high photothermal conversion efficiency, demonstrating significant potential for solar water heating applications.