Changing band offsets in copper phthalocyanine to copolymer poly(vinylidene fluoride with trifluoroethylene) heterojunctions
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Photoemission and inverse photoemission spectra of CoPc, NiPc and CuPc... | Download Scientific Diagram
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VBM or HOMO, and CBM or LUMO, relative to a common vacuum level. These... | Download Scientific Diagram
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Schematic of the evolution of the energy level positions at the CuPc/BP... | Download Scientific Diagram
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Open-circuit voltage exceeding the outermost HOMO-LUMO offset in cascade organic solar cells - ScienceDirect
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How accurate are energies of HOMO and LUMO levels in small-molecule organic semiconductors determined from cyclic voltammetry or optical spectroscopy? - ScienceDirect
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Influence of film thickness and air exposure on the transport gap of manganese phthalocyanine: AIP Advances: Vol 3, No 6
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Figure S8. Molecular structures of the F 16 CuPc (a) and CuPc (b). The... | Download Scientific Diagram
The transport gap of organic semiconductors studied using the combination of direct and inverse photoemission
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Enhancing Intermolecular Interaction by Cyano Substitution in Copper Phthalocyanine - J. Phys. Chem. C - X-MOL
The role of gap states in the energy level alignment at the organic–organic heterojunction interfaces - Physical Chemistry Chemical Physics (RSC Publishing)
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Materials | Free Full-Text | CuPc: Effects of its Doping and a Study of Its Organic-Semiconducting Properties for Application in Flexible Devices | HTML
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Energy shifts of the HOMO, LUMO, and VL of a F 16 CuPc in F 16 CuPc/... | Download Scientific Diagram
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Evaluation of internal potential distribution and carrier extraction properties of organic solar cells through Kelvin probe and time-of-flight measurements: Journal of Applied Physics: Vol 116, No 11
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