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For the AFM analysis, samples were retrieved from the solution.
The carbon nanostructures decorated with Au nanoparticles (Au/C) were retrieved from the solution.
The autoclaves were cooled and the resulted black solid was retrieved from the solution by centrifugation, washed with distilled water followed by ethanol to remove the ions possibly remaining in the end product, and finally dried in air.
Subsequently, the resulting black solid was retrieved from the solution by centrifugation, washed with distilled water followed by ethanol two times to remove the ions possibly remaining in the end product, and finally dried at 60 °C for 6 h, respectively.
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Figure 8 Ti L-edge and O K-edge EELspectrara of titanium oxide microtube (sample 4), and the nanocondensates of TiO2, Ti2O3, and TiO (sample 2) retrieved from the colloidal solutions.
The background-subtracted Ti L-edge and O K-edge EELS spectra of titanium oxide microtube (sample 4), and the nanocondensates of TiO2, Ti2O3, and TiO (sample 2) retrieved from the colloidal solutions as compiled in Fig. 8, showed that the titanium ions are 4+, 3+, and 2+ in valence as for TiO2, Ti2O3, and TiO, respectively [19].
The powdery materials retrieved from the colloidal Au solution having been processed by PLAL were agglomerated as nanoparticle chain aggregate (NCA), as shown by the TEM bright field image (BFI) in Fig. 2a.
Lignin can be retrieved from the anti-solvent solution after the evaporation of acetone and water [ 16, 32].
Eight factors were retrieved from the Positive Matrix Factorization solutions and adding source profile constraints enhanced the interpretability of source profiles.
Two simplified computational methods, relying on standard modelling tools and regular finite elements are explored and compared with the outcome of theoretical solutions retrieved from the literature and with the results of full, computationally intensive, finite element analyses.
The retained A-HA solution was retrieved from the dialysis apparatus and stored in a 15 mL tube in the 4°C fridge.
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