Biomimetically Spider Web -Like Hydrogels for High-Efficiency Solar Evaporators

Author:

He Xiaoyan,Hou Miaomiao,Tan Zheping,Ma Shuo,Cao Runze,Ma Penggai,Lu Xiaoquan

Publisher

Elsevier BV

Reference44 articles.

1. Fourier transform infrared spectroscopy (FT-IR) was obtained by EQUNIVX55 FT-IR instrument and KBr powder pellet. The transmittance (T) and reflectance (R) spectra were recorded by an ultraviolet-visible-near-infrared spectrophotometer. (UV3600 Plus, Japan). The absorptance (A) spectra were calculated based on transmittance and reflectance (A=1-R-T). Heat flow-temperature curves of the samples were measured using a differential scanning calorimeter (DSC, TA Q2000) at a linear heating rate of 5 �C min -1 . The contact angle of water was measured by a contact angle measuring instrument (SL200KB). Ion concentrations in the collected water were analyzed using an inductively coupled plasma mass spectrometer (ICP-OES, Agilent 5110). Haake rheometer (Mars60 Germany) measuring mechanical properties of the hydrogel. Raman spectra of water in hydrogels are recorded on spectrometers;SM-5:1 and SM-2:1, respectively. The corresponding weight ratios of MXene-SnS 2

2. A salt-rejecting floating solar still for low-cost desalination;Zandavi George;Energy & environmental science,2018

3. Solar-thermo-radiative evaporator for continuous steam generation and salt harvesting;L Wang;Solar Energy,2023

4. High efficient 3D solar interfacial evaporator: Achieved by the synergy of simple material and structure;Z Xu;Desalination,2022

5. Highly Efficient and Cost-Effective Water Desalination via the Hybrid Hydrogel-Based Solar-Driven Interfacial Evaporation;B Luo;Social Science Electronic Publishing,2022

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