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Beilstein J. Nanotechnol. 2025, 16, 195–215, doi:10.3762/bjnano.16.16
Figure 1: Overview of ophthalmic treatment technologies based on photothermal nanomaterials.
Figure 2: Exploring the photothermal conversion mechanisms and therapeutic applications of photothermal nanom...
Figure 3: Application of photothermal nanomaterials in constructing edge photothermal rings for IOLs in the t...
Figure 4: Mechanisms and treatment of vitreous opacity. (a) Vitreous gel liquefaction leads to repulsion, swe...
Figure 5: Utilizing photothermal nanomaterials in glaucoma treatment. (a) The heating of photothermal nanopar...
Figure 6: Enhancing NIR vision with photothermal nanotechnology. (a) Photothermal Au nanorods intricately cou...
Figure 7: Prospects of photothermal nanomaterials for ophthalmic applications.
Beilstein J. Nanotechnol. 2020, 11, 1809–1821, doi:10.3762/bjnano.11.163
Figure 1: The strategy used for synthesizing 3D free-standing NiFe-PBA/PP-T cathodes. (Adapted from [42], Copyrig...
Figure 2: (a) SEM images of NiFe-PBA/PP, (b) NiFe-PBA/PP-700, and (c) NiFe-PBA/PP-900. (d) Corresponding XRD ...
Figure 3: (a–c) HR-TEM images and (d,e) element mappings of NiFe-PBA/PP-900.
Figure 4: High-resolution XPS spectra of NiFe-PBA/PP-T calcined at 700 (top panels) and 900 °C (bottom panels...
Figure 5: (a) In situ cyclic voltammetry curves of Li–O2 batteries with various cathodes. (b) Charge and disc...
Figure 6: Rate performance of the (a) NiFe-PBA/PP-900 cathode and of the (b) NiFe-PBA/PP-700 cathode at 0.1, ...
Figure 7: (a,c) SEM images of NiFe-PBA/PP-900 cathodes after the first discharge and (b,d) after the first ch...
Figure 8: (a) High-resolution Li 1s XPS spectra of NiFe-PBA/PP-900 after the 1st full discharge and the 1st f...