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Beilstein J. Nanotechnol. 2017, 8, 892–905, doi:10.3762/bjnano.8.91
Figure 1: Schematic representation of the triptycene-based sulfur and selenium compounds used for the formati...
Figure 2: Experimental and calculated spectra of (a) Trp0S-, (b) Trp0Se-, (c) Trp1S-, and (d) Trp1Se-species....
Figure 3: XP spectra of triptycene-terminated thiolate- and selenolate-monolayers on Au(111). See text for di...
Figure 4: Thicknesses of the Trp0S, Trp0Se, Trp1S and Trp1Se monolayers on Au(111) determined from the evalua...
Figure 5: Carbon K-edge NEXAFS spectra of Trp0S-, Trp0Se-, Trp1S- and Trp1Se-SAMs on Au(111). (a) Recorded at...
Figure 6: Illustration of relevant angles in a triptycene-based molecule anchored on a gold surface. The chal...
Figure 7: NEXAFS C 1s-π* resonance intensity ratio I(θ)/I(90°) of Trp0S- (▲), Trp0Se- (▼), Trp1S- (♦) and Trp...
Figure 8: Thermal desorption spectra of a) Trp0S-, b) Trp0Se-, c) Trp1S- and d) Trp1Se-SAMs on Au(111). See t...
Beilstein J. Nanotechnol. 2014, 5, 1254–1260, doi:10.3762/bjnano.5.139
Figure 1: Top: Picture of molecular sieve beads (zeolite X) loaded with gold-NPs, from a batch used for ethan...
Figure 2: Left: Absolute uptake of dodecanethiol in dependence of the molar amount of gold per 1 g of NP-impr...
Figure 3: Relative change of resistivity of a thin gold film sensor upon immersion into ethanol species of di...