Home

Değerli kriz keşif cupc homo lumo gap Vurma düşünülmüş bacak

How accurate are energies of HOMO and LUMO levels in small-molecule organic  semiconductors determined from cyclic voltammetry or optical spectroscopy?  - ScienceDirect
How accurate are energies of HOMO and LUMO levels in small-molecule organic semiconductors determined from cyclic voltammetry or optical spectroscopy? - ScienceDirect

The role of gap states in the energy level alignment at the organic–organic  heterojunction interfaces - Physical Chemistry Chemical Physics (RSC  Publishing)
The role of gap states in the energy level alignment at the organic–organic heterojunction interfaces - Physical Chemistry Chemical Physics (RSC Publishing)

Energy shifts of the HOMO, LUMO, and VL of a F 16 CuPc in F 16 CuPc/... |  Download Scientific Diagram
Energy shifts of the HOMO, LUMO, and VL of a F 16 CuPc in F 16 CuPc/... | Download Scientific Diagram

Changing band offsets in copper phthalocyanine to copolymer poly(vinylidene  fluoride with trifluoroethylene) heterojunctions
Changing band offsets in copper phthalocyanine to copolymer poly(vinylidene fluoride with trifluoroethylene) heterojunctions

Materials | Free Full-Text | CuPc: Effects of its Doping and a Study of Its  Organic-Semiconducting Properties for Application in Flexible Devices | HTML
Materials | Free Full-Text | CuPc: Effects of its Doping and a Study of Its Organic-Semiconducting Properties for Application in Flexible Devices | HTML

The transport gap of organic semiconductors studied using the combination  of direct and inverse photoemission
The transport gap of organic semiconductors studied using the combination of direct and inverse photoemission

Electronic Structure of Copper Phthalocyanine: a Comparative Density  Functional Theory Study
Electronic Structure of Copper Phthalocyanine: a Comparative Density Functional Theory Study

PROCEEDINGS OF SPIE
PROCEEDINGS OF SPIE

Adsorption and electronic properties of pentacene on thin dielectric  decoupling layers. - Abstract - Europe PMC
Adsorption and electronic properties of pentacene on thin dielectric decoupling layers. - Abstract - Europe PMC

Figure S8. Molecular structures of the F 16 CuPc (a) and CuPc (b). The... |  Download Scientific Diagram
Figure S8. Molecular structures of the F 16 CuPc (a) and CuPc (b). The... | Download Scientific Diagram

Influence of film thickness and air exposure on the transport gap of  manganese phthalocyanine: AIP Advances: Vol 3, No 6
Influence of film thickness and air exposure on the transport gap of manganese phthalocyanine: AIP Advances: Vol 3, No 6

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
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

3 Electronic Structure of Molecular Solids: Bridge to the Electrical  Conduction
3 Electronic Structure of Molecular Solids: Bridge to the Electrical Conduction

How accurate are energies of HOMO and LUMO levels in small-molecule organic  semiconductors determined from cyclic voltammetry or optical spectroscopy?  - ScienceDirect
How accurate are energies of HOMO and LUMO levels in small-molecule organic semiconductors determined from cyclic voltammetry or optical spectroscopy? - ScienceDirect

Figure 3 from Organic Solar Cells Performances Improvement Induced by  Interface Buffer Layers | Semantic Scholar
Figure 3 from Organic Solar Cells Performances Improvement Induced by Interface Buffer Layers | Semantic Scholar

difference between HOMO and LUMO levels of PTCDA (or CuPc) and their... |  Download Scientific Diagram
difference between HOMO and LUMO levels of PTCDA (or CuPc) and their... | Download Scientific Diagram

ORGANIC PHOTOVOLTAIC CELLS: HISTORY, PRINCIPLE AND TECHNIQUES
ORGANIC PHOTOVOLTAIC CELLS: HISTORY, PRINCIPLE AND TECHNIQUES

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
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

Magnetic properties of copper hexadecaphthalocyanine (F16CuPc) thin films  and powders
Magnetic properties of copper hexadecaphthalocyanine (F16CuPc) thin films and powders

The transport gap of organic semiconductors studied using the combination  of direct and inverse photoemission
The transport gap of organic semiconductors studied using the combination of direct and inverse photoemission

Influence of film thickness and air exposure on the transport gap of  manganese phthalocyanine: AIP Advances: Vol 3, No 6
Influence of film thickness and air exposure on the transport gap of manganese phthalocyanine: AIP Advances: Vol 3, No 6

Organic Solar Cells | SpringerLink
Organic Solar Cells | SpringerLink

Translation of metal-phthalocyanines adsorbed on Au(111): from van der  Waals interaction to strong electronic correlation | Scientific Reports
Translation of metal-phthalocyanines adsorbed on Au(111): from van der Waals interaction to strong electronic correlation | Scientific Reports

Molecular level alignment diagrams constructed using the HOMO and... |  Download Scientific Diagram
Molecular level alignment diagrams constructed using the HOMO and... | Download Scientific Diagram

Photoemission and inverse photoemission spectra of CoPc, NiPc and CuPc... |  Download Scientific Diagram
Photoemission and inverse photoemission spectra of CoPc, NiPc and CuPc... | Download Scientific Diagram

Research - Abhishek Kumar
Research - Abhishek Kumar

Enhancing Intermolecular Interaction by Cyano Substitution in Copper  Phthalocyanine - J. Phys. Chem. C - X-MOL
Enhancing Intermolecular Interaction by Cyano Substitution in Copper Phthalocyanine - J. Phys. Chem. C - X-MOL