Science Advances

Supplementary Materials

This PDF file includes:

  • Fig. S1. Experimental and simulated electron diffraction (ED) patterns of 1.0-μm–sized MFI NSs.
  • Fig. S2. N2 physical adsorption characterization of 1.0-μm–sized MFI NSs and corresponding parent MFI crystals.
  • Fig. S3. Influence of organic template removal on final morphology of MFI particles.
  • Fig. S4. Influence of TPAOH on final morphology of MFI NSs.
  • Fig. S5. Influence of the volume of TPAOH solution on final morphology of MFI NSs.
  • Fig. S6. Characterization of parent MFI crystals and MFI NSs with different sizes.
  • Fig. S7. Influence of hydrothermal treatment time on final morphology of MFI NSs.
  • Fig. S8. Mechanical robustness test of 1.0-μm–sized MFI NSs.
  • Fig. S9. SEM characterization of MFI seed monolayers assembled with ethanol and obtained by manual rubbing.
  • Fig. S10. SEM characterization of MFI layers prepared by conventional convective heating and multi-mode microwave heating.
  • Fig. S11. SEM characterization of MFI layers prepared by single-mode microwave heating.
  • Fig. S12. XRD characterization of b-oriented MFI seed monolayers and b-oriented MFI layers on different substrates.
  • Fig. S13. SEM characterization of the surface morphology of Al plate, Pt electrode, and porous γ-Al2O3 substrate.
  • Table S1. Textural properties of 1.0-μm–sized MFI NSs and the corresponding parent MFI crystals.
  • Table S2. A summary of the separation performance of reported MFI membranes for butane isomer mixture separation in the temperature range of 22° to 30°C.
  • Table S3. Reproducibility of γ-Al2O3–supported ultrathin b-oriented MFI layers.
  • Table S4. A summary of synthetic conditions of parent MFI crystals.
  • Table S5. A summary of synthetic conditions of MFI layers on glass plates.
  • References (4259)

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