4.8 Article

Active sites in heterogeneous ice nucleation-the example of K-rich feldspars

期刊

SCIENCE
卷 355, 期 6323, 页码 367-371

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aai8034

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资金

  1. Deutsche Forschungsgemeinschaft (DFG) [DFG-FOR-1525-6343]
  2. KIT Startup Budget [2066992441-Start-Up-Eisbildung-ESEM GG 507]
  3. European Research Council under the European Union's Seventh Framework Programme (FP)-European Research Council [616121]
  4. Royal Society through a Royal Society Wolfson Research Merit Award
  5. Materials Chemistry Consortium through the Engineering and Physical Sciences Research Council [EP/L000202]
  6. UCL Research Computing
  7. London Centre for Nanotechnology
  8. Helmholtz Association under Atmosphere and Climate Programme (ATMO)
  9. Karlsruhe Institute of Technology

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Ice formation on aerosol particles is a process of crucial importance to Earth's climate and the environmental sciences, but it is not understood at the molecular level. This is partly because the nature of active sites, local surface features where ice growth commences, is still unclear. Here we report direct electron-microscopic observations of deposition growth of aligned ice crystals on feldspar, an atmospherically important component of mineral dust. Our molecular-scale computer simulations indicate that this alignment arises from the preferential nucleation of prismatic crystal planes of ice on high-energy (100) surface planes of feldspar. The microscopic patches of (100) surface, exposed at surface defects such as steps, cracks, and cavities, are thought to be responsible for the high ice nucleation efficacy of potassium (K)-feldspar particles.

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