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Beilstein J. Nanotechnol. 2018, 9, 1328–1338, doi:10.3762/bjnano.9.126
Figure 1: Schematic representation of PLA core formation process. Ball and stick representation of A) lactic ...
Figure 2: Evaluation of optimal separation distance between PLA chains. The energy was evaluated for two 20-m...
Figure 3: Molecular structure of DSPE–PEG(2000) carboxy-terminated, methoxy-terminated and amino-terminated f...
Figure 4: Schematic representation of the initial structure for DSPE–PEG coating process. The PLA core is rep...
Figure 5: Snapshots of initial (left) and final (right) conformation of PLA–DSPE–PEG-coated structure after 1...
Figure 6: A) 2D structure of cilostazol. B) Main putative binding sites of cilostazol docked into the PLA cor...
Figure 7: A) The radius of gyration and B) triaxial parameter as a function of simulated time for PLA cores w...
Figure 8: Radius of gyration as a function of time for anionic (PLA–PEG–COOH), neutral (PLA–PEG–CH3) and cati...
Figure 9: Distance between terminal groups from DSPE–PEG–lipid and center of mass of the PLA core as a functi...
Beilstein J. Nanotechnol. 2014, 5, 1371–1379, doi:10.3762/bjnano.5.150
Figure 1: (a) STEM image of Cu–Pt bimetallic nanoparticles. The inset in (a) shows the HAADF-STEM image, and ...
Figure 2: (a) HAADF-STEM image of Cu–Pt bimetallic nanoparticles, (b) Cu and Pt elemental line profiles along...
Figure 3: High resolution HAADF-STEM image of (a) Cu–Pt bimetallic nanoparticle; the inset represents the fas...
Figure 4: (a) Cs-corrected STEM-HAADF image of a bimetallic Cu–Pt nanoparticle oriented along the [011] zone ...
Figure 5: Snapshots taken during time evolution (20 ns) of Pt (cyan) deposition on the Cu NPs (orange) at T =...
Figure 6: STEM simulated images of the final configurations shown in Figure 5. In (a–c) TO201 seed and (e–h) TO586 se...
Figure 7: Cu and Pt elemental line profiles across the nanoalloy structure obtained after 20 ns of GCLD simul...
Figure 8: Calculation of exchange energy (Eexc) for Pt atom diffusion in different sub-surface layers inside ...