Science Advances

Supplementary Materials

This PDF file includes:

  • Additional computational details
  • Fig. S1. SAED of the recovered nanodiamond material.
  • Fig. S2. Additional TEM images of the recovered nanodiamond material.
  • Fig. S3. Raman of the recovered nanodiamond material.
  • Fig. S4. Low-energy EELS.
  • Fig. S5. DFT modeling of the SiV defect in diamond under uniform hydrostatic pressure.
  • Fig. S6. DFT modeling of the SiV excited states.
  • Fig. S7. STEM-EDS composition maps.
  • Fig. S8. Carbon-K edge scanning transmission x-ray microscopy of nanodiamond synthesized from undoped carbon aerogel on a lacey carbon TEM grid.
  • Fig. S9. Poisson distribution of silicon incorporation per nanodiamond grain with varying size.
  • Fig. S10. Integrated STEM-EEL spectrum image of the recovered silicon-doped carbon aerogel.
  • Fig. S11. DFT modeling of surface capping scheme on SiV center excitations.
  • Table S1. Time-dependent DFT transition energies and oscillator strengths.
  • Table S2. Time-dependent DFT transition energies and oscillator strengths for ligand capping schemes.
  • Table S3. DFT orbital differences for the ligand capping schemes.
  • References (4360)

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