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Beilstein J. Nanotechnol. 2025, 16, 2034–2054, doi:10.3762/bjnano.16.140
Figure 1: Genealogy of the Materials used in the current study. Achiral materials as references (grey); mater...
Scheme 1: Synthesis route to AlaNH10oSil.
Figure 2: Characterization of AlaNH10oSIL. (a) SEM micrograph (scale bar = 1 μm). (b) N2 physisorption isothe...
Scheme 2: Synthesis route towards organosilica aerogels containing neighboring groups and chiral functionalit...
Figure 3: cw-ESR spectra of (+)-3CP (black) and (−)-3CP (blue) dissolved in ethanol and infiltrated into achi...
Figure 4: cw-ESR spectra of (+)-3CP (blue) and (−)-3CP (red) dissolved in ethanol and confined in SerNH10oSIL...
Figure 5: cw-ESR spectra of (+)-3CP (blue) and (−)-3CP (red) confined in SerNH10SIL recorded at T = 213 K (da...
Figure 6: (a) cw-ESR spectra of (+)-3CP (blue) and (−)-3CP (red) confined in AlaNH10oSIL recorded at T = 223 ...
Figure 7: (a) SEM micrograph of a single porous particle of the commercial Chiralpak IG-3 material; scale bar...
Figure 8: HPLC chromatograms using Chiralpak IG-3 as a stationary phase of (+)-3CP (blue) and (−)-3CP (red) u...
Figure 9: (a) Enlargement of the region of the ESR spectra of the spin probes dissolved in the ethanol/ penta...
Figure 10: cw-ESR spectra recorded at different temperatures for SH-FmocAlaNH10oSIL (a) and SH-AlaNH10oSIL (b)...
Figure 11: Temperature dependency of χads (a) and selectivity factor (b) of (+)-3CP (blue) and (−)-3CP (red) i...
Figure 12: Organosilica materials containing a spin probe attached to the surfaces.
Figure 13: (a) ESR spectra recorded at T = 103 K for TEMPONHxSIL with x = 0.01 (black), 0.02 (red), 0.05 (blue...