This search combines search strings from the content search (i.e. "Full Text", "Author", "Title", "Abstract", or "Keywords") with "Article Type" and "Publication Date Range" using the AND operator.
Beilstein J. Nanotechnol. 2018, 9, 3025–3038, doi:10.3762/bjnano.9.281
Figure 1: Design of a planar CIGSe solar cell.
Figure 2: Scheme of the micro-concentrator solar cell concept.
Figure 3: Schematic representation of ordered indium island growth on fs-laser structured, molybdenum-coated ...
Figure 4: Optical micrographs of fs-laser-treated glass. For each line, the number of pulses per spot, N, is ...
Figure 5: Scanning electron micrographs of laser-induced modifications on glass. Laser parameters: F = 1.63 J...
Figure 6: Scanning electron micrographs of individual laser-generated ablation spots on glass (top row) and c...
Figure 7: Optical micrographs of a laser-generated spot array on glass (left) and a corresponding array after...
Figure 8: Scheme of laser-induced forward transfer. The scale bars in the OM insets on the right-hand side co...
Figure 9: Optical micrographs of LIFT deposits on molybdenum on glass. Cu–In donor layer: 20 nm copper, 200 n...
Figure 10: Scheme of the bottom-up process for the preparation of CISe or CIGSe microabsorbers via the nucleat...
Figure 11: Processing of In precursor islands prepared by the nucleation approach (left) to CISe micro absorbe...
Figure 12: Scheme of the process for manufacturing solar cells from microabsorbers. a) CISe absorber, b) spin ...
Figure 13: Cross section of a CISe micro absorber island after processing to a micro cell imaged by tilted-vie...
Figure 14: Electrical characterization with different light concentration factors for a CISe microcell from th...
Figure 15: Electrical characterization under various light concentration factors for CIGSe micro cell from nuc...
Figure 16: Electrical characterization under various light concentration factors for CIGSe micro cell from LIF...