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Updated: Jan 13, 2026

Interfacial Molecular-level Structures of Polymers and Biomacromolecules Revealed via Sum Frequency Generation Vibrational Spectroscopy
Published on: August 13, 2019
Preparation of Fe/PANI/GF Composite and Study on Its Interfacial Evaporation Performance
Jipu Guo1, Xiaolong Wei1, Meiyan Wang2
1State Grid (Xi'an) Environmental Protection Technology Center Co., Ltd., Xi'an 710100, China.
Abstract:
Addressing the global shortage of freshwater resources necessitates the development of efficient and economical photothermal evaporation materials. Herein, an Fe/polyaniline/graphite felt (Fe/PANI/GF) composite was fabricated by combining electrochemical deposition and impregnation. The structural characteristics, photothermal conversion efficiency, and interfacial evaporation performance of the composite were systematically investigated. Results demonstrate that Fe/PANI/GF exhibits a remarkably high solar absorption rate of 95% across the 300-2000 nm wavelength range. Under 1 kW m-2 illumination, the surface temperature of Fe/PANI/GF rapidly increased from ambient temperature to 60.3 °C within 5 min. The composite achieved an evaporation rate of 2.05 kg m-2 h-1, corresponding to an interfacial evaporation efficiency of 70.3%. This exceptional performance is attributed to the synergistic effect between the broad-spectrum light absorption of PANI and the enhanced light absorption induced by Fe coordination, which collectively promote the photothermal conversion process. This study provides valuable insights for the development of high-performance solar interfacial evaporation materials.
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