Energy Level Modulation of HOMO, LUMO, and BandGap in Conjugated Polymers for Organic Photovoltaic Applications
HOMO–LUMO Energy-Gap Tuning of π-Conjugated Zwitterions Composed of Electron-Donating Anion and Electron-Accepting Cation | The Journal of Organic Chemistry
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Molecules | Free Full-Text | Theoretical Analysis on Heteroleptic Cu(I)-Based Complexes for Dye-Sensitized Solar Cells: Effect of Anchors on Electronic Structure, Spectrum, Excitation, and Intramolecular and Interfacial Electron Transfer | HTML
![Molecular orbital diagram and arrow indicates HOMO–LUMO energy gap of... | Download Scientific Diagram Molecular orbital diagram and arrow indicates HOMO–LUMO energy gap of... | Download Scientific Diagram](https://www.researchgate.net/profile/Wei-Guan-21/publication/233639575/figure/fig4/AS:300066922352643@1448552937068/Molecular-orbital-diagram-and-arrow-indicates-HOMO-LUMO-energy-gap-of-systems-3-and-4.png)
Molecular orbital diagram and arrow indicates HOMO–LUMO energy gap of... | Download Scientific Diagram
![Fig. S10 Calculation of band gap between HOMO and LUMO of NDI-nap and... | Download Scientific Diagram Fig. S10 Calculation of band gap between HOMO and LUMO of NDI-nap and... | Download Scientific Diagram](https://www.researchgate.net/publication/274099526/figure/fig1/AS:616375437496322@1523966764555/Fig-S10-Calculation-of-band-gap-between-HOMO-and-LUMO-of-NDI-nap-and-NDI-nap-CB7.png)
Fig. S10 Calculation of band gap between HOMO and LUMO of NDI-nap and... | Download Scientific Diagram
![Frontiers | HOMO–LUMO Gaps and Molecular Structures of Polycyclic Aromatic Hydrocarbons in Soot Formation Frontiers | HOMO–LUMO Gaps and Molecular Structures of Polycyclic Aromatic Hydrocarbons in Soot Formation](https://www.frontiersin.org/files/MyHome%20Article%20Library/744001/744001_Thumb_400.jpg)
Frontiers | HOMO–LUMO Gaps and Molecular Structures of Polycyclic Aromatic Hydrocarbons in Soot Formation
![Figure 7 | DFT analysis and electronic properties, and synthesis of tetra (9-phenyl-9H-xanthen-9-yl) oxy peripheral-substituted zinc phthalocyanine | SpringerLink Figure 7 | DFT analysis and electronic properties, and synthesis of tetra (9-phenyl-9H-xanthen-9-yl) oxy peripheral-substituted zinc phthalocyanine | SpringerLink](https://media.springernature.com/full/springer-static/image/art%3A10.1007%2Fs11696-020-01087-4/MediaObjects/11696_2020_1087_Fig7_HTML.png)
Figure 7 | DFT analysis and electronic properties, and synthesis of tetra (9-phenyl-9H-xanthen-9-yl) oxy peripheral-substituted zinc phthalocyanine | SpringerLink
HOMO–LUMO energy gap control in platinum(ii) biphenyl complexes containing 2,2′-bipyridine ligands - Dalton Transactions (RSC Publishing)
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Exploring the electrochromic properties of poly(thieno[3,2- b ]thiophene)s decorated with electron-deficient side groups - Polymer Chemistry (RSC Publishing) DOI:10.1039/C6PY01847E
Tuning the HOMO–LUMO Energy Gap of Small Diamondoids Using Inverse Molecular Design | Journal of Chemical Theory and Computation
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