Janus Energy‐Mass Relay Architecture via High‐Entropy Catalysis for Non‐Equilibrium Solar Desalination
Abstract
ABSTRACT To resolve the thermal‐mass mismatch bottleneck in solar‐driven interfacial evaporation, the study proposes a Janus interface energy‐mass relay integrating high‐entropy alloy oxide (HEAO) nanoparticles with a double‐network hydrogel. The hydrogel acts as an enthalpy modulator, pre‐activating bulk water and blocking conductive heat loss. The top HEAO layer serves as an entropy accelerator, leveraging its active sites and oxygen vacancies to rapidly shear the residual hydrogen bonds of pre‐activated water. In situ XPS and DFT analyses reveal that photo‐induced polarization at HEAO defects injects charge into water anti‐bonding orbitals, stretching the O─H bond to 1.209 Å. Consequently, the evaporator achieves an evaporation rate of 4.02 kg m −2 h −1 under one sun illumination. This work reveals the critical role of cascaded hydration editing in breaking the theoretical limits of interfacial phase transitions.
Article Details
Authors (12)
Shuai Liu
College of Materials Science and Engineering
Jinchi Li
College of Materials and Chemistry & Chemical Engineering (College of Lithium Resources and Lithium Battery Industry) Chengdu University of Technology Chengdu China
Hongbing Wang
Zhen Yu
Aihao Xu
Guangxi Academy of Medical Sciences The People's Hospital of Guangxi Zhuang Autonomous Region Nanning China
Xiangdong Zeng
Dalian Institute of Chemical Physics
Jun Xia
Xinrong Huang
College of Materials and Chemistry & Chemical Engineering (College of Lithium Resources and Lithium Battery Industry) Chengdu University of Technology Chengdu China
Zechang Wei
Yingtang Zhou
Zhejiang Key Laboratory of Petrochemical Environmental Pollution Control, National Engineering Research Center for Marine Aquaculture
Xiaoke Li
Swee Ching Tan