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A Universal Design Strategy Based on NiPS3 Nanosheets towards Efficient Photothermal Conversion and Solar Desalination

  • Honglei Wang
  • , Yifan Bo
  • , Malte Klingenhof
  • , Jiali Peng
  • , Dong Wang
  • , Bing Wu
  • , Jörg Pezoldt
  • , Pengfei Cheng
  • , Andrea Knauer
  • , Weibo Hua
  • , Hongguang Wang
  • , Peter A. van Aken
  • , Zdenek Sofer
  • , Peter Strasser
  • , Dirk M. Guldi
  • , Peter Schaaf
  • Ilmenau University of Technology
  • Friedrich-Alexander University Erlangen-Nürnberg
  • Technical University of Berlin
  • Karlsruhe Institute of Technology
  • University of Chemistry and Technology, Prague
  • Max Planck Institute for Solid State Research

Research output: Contribution to journalArticlepeer-review

47 Scopus citations

Abstract

2D nanomaterials are proposed as promising photothermal materials for interfacial photothermal water evaporation. However, low evaporation efficiency, the use of hazardous hydrofluoric solution, and poor stability severely limit their practical applications. Here, a mixed solvent exfoliation surface deposition (MSESD) strategy for the preparation of NiPS3 nanosheets and NiPS3/polyvinyl alcohol (PVA) converter is successfully developed. The converter is obtained by drop-casting the NiPS3/PVA nanosheets onto a sponge. The PVA is mainly deposited on the edge of NiPS3 nanosheets, which not only improves the stability of NiPS3 nanosheets, but also adheres to the sponge to prepare a 3D photothermal converter, which shows an evaporation rate of 1.48 kg m−2 h−1 and the average photothermal conversion efficiency (PTCE) of 93.5% under a light intensity of 1 kW m−2. The photothermal conversion mechanism reveals that the energy of absorbed photons in NiPS3 nanosheets can be effectively converted into heat through non-radiative photon transitions as well as multiple optical interactions. To the best of the knowledge, this is the first report on the application of 2D metal-phosphorus-chalcogen (MPChx) for solar desalination, which provides new insights and guidance for the development of high-performance 2D photothermal materials.

Original languageEnglish
Article number2310942
JournalAdvanced Functional Materials
Volume34
Issue number8
DOIs
StatePublished - 19 Feb 2024

Keywords

  • 2D materials
  • NiPS nanosheets
  • desalination
  • photothermal conversions
  • surface depositions

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