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Effektiv stam schack graphene nanoflakes singlet triplet gap katalog snögubbe stor

MFH-calculated singlet-triplet gaps of 1 and di-1 a, Schematic... |  Download Scientific Diagram
MFH-calculated singlet-triplet gaps of 1 and di-1 a, Schematic... | Download Scientific Diagram

Nanomaterials | Free Full-Text | TAO-DFT Study on the Electronic Properties  of Diamond-Shaped Graphene Nanoflakes
Nanomaterials | Free Full-Text | TAO-DFT Study on the Electronic Properties of Diamond-Shaped Graphene Nanoflakes

Nanomaterials | Free Full-Text | TAO-DFT Study on the Electronic Properties  of Diamond-Shaped Graphene Nanoflakes
Nanomaterials | Free Full-Text | TAO-DFT Study on the Electronic Properties of Diamond-Shaped Graphene Nanoflakes

Spin state engineering of triangulene graphene embedded in h-BN nanoflake -  ScienceDirect
Spin state engineering of triangulene graphene embedded in h-BN nanoflake - ScienceDirect

Publication | The Shintani Group, Osaka University
Publication | The Shintani Group, Osaka University

Open-Shell Graphene Fragments - ScienceDirect
Open-Shell Graphene Fragments - ScienceDirect

Controllable Singlet–Triplet Energy Splitting of Graphene Quantum Dots  through Oxidation: From Phosphorescence to TADF - Park - 2020 - Advanced  Materials - Wiley Online Library
Controllable Singlet–Triplet Energy Splitting of Graphene Quantum Dots through Oxidation: From Phosphorescence to TADF - Park - 2020 - Advanced Materials - Wiley Online Library

PDF] Optical properties of graphene nanoflakes: Shape matters. | Semantic  Scholar
PDF] Optical properties of graphene nanoflakes: Shape matters. | Semantic Scholar

Substituent effect on the spin state of the graphene nanoflakes - RSC  Advances (RSC Publishing)
Substituent effect on the spin state of the graphene nanoflakes - RSC Advances (RSC Publishing)

Singlet-triplet energy (ST) gap of pure/Li-adsorbed n-acene as a... |  Download Scientific Diagram
Singlet-triplet energy (ST) gap of pure/Li-adsorbed n-acene as a... | Download Scientific Diagram

Open‐Shell Characters and Second Hyperpolarizabilities of One‐Dimensional Graphene  Nanoflakes Composed of Trigonal Graphene Units - Yoneda - 2011 -  ChemPhysChem - Wiley Online Library
Open‐Shell Characters and Second Hyperpolarizabilities of One‐Dimensional Graphene Nanoflakes Composed of Trigonal Graphene Units - Yoneda - 2011 - ChemPhysChem - Wiley Online Library

Open-Shell Graphene Fragments - ScienceDirect
Open-Shell Graphene Fragments - ScienceDirect

PDF] Tuning antiferromagnetism of vacancies with magnetic fields in graphene  nanoflakes | Semantic Scholar
PDF] Tuning antiferromagnetism of vacancies with magnetic fields in graphene nanoflakes | Semantic Scholar

Electronic Properties of Triangle-Shaped Graphene Nanoflakes from TAO-DFT |  ACS Omega
Electronic Properties of Triangle-Shaped Graphene Nanoflakes from TAO-DFT | ACS Omega

Biological recognition of graphene nanoflakes | Nature Communications
Biological recognition of graphene nanoflakes | Nature Communications

Vista de Oligomeric approach to 2D materials modeling | Mundo Nano. Revista  Interdisciplinaria en Nanociencias y Nanotecnología
Vista de Oligomeric approach to 2D materials modeling | Mundo Nano. Revista Interdisciplinaria en Nanociencias y Nanotecnología

PDF) TAO-DFT Study on the Electronic Properties of Diamond-Shaped Graphene  Nanoflakes
PDF) TAO-DFT Study on the Electronic Properties of Diamond-Shaped Graphene Nanoflakes

PDF] Optical properties of graphene nanoflakes: Shape matters. | Semantic  Scholar
PDF] Optical properties of graphene nanoflakes: Shape matters. | Semantic Scholar

The thermodynamic stability of the different sets of trigonal graphene... |  Download Scientific Diagram
The thermodynamic stability of the different sets of trigonal graphene... | Download Scientific Diagram

Electronic Properties of Triangle-Shaped Graphene Nanoflakes from TAO-DFT |  ACS Omega
Electronic Properties of Triangle-Shaped Graphene Nanoflakes from TAO-DFT | ACS Omega

Electronic Properties of Triangle-Shaped Graphene Nanoflakes from TAO-DFT |  ACS Omega
Electronic Properties of Triangle-Shaped Graphene Nanoflakes from TAO-DFT | ACS Omega

Nanomaterials | Free Full-Text | Electronic Properties of Hexagonal Graphene  Quantum Rings from TAO-DFT
Nanomaterials | Free Full-Text | Electronic Properties of Hexagonal Graphene Quantum Rings from TAO-DFT

Singlet-triplet energy gap of n-pyrene ((a) n = 2–15 and (b) n = 4–15),...  | Download Scientific Diagram
Singlet-triplet energy gap of n-pyrene ((a) n = 2–15 and (b) n = 4–15),... | Download Scientific Diagram

MFH-calculated singlet-triplet gaps of 1 and di-1 a, Schematic... |  Download Scientific Diagram
MFH-calculated singlet-triplet gaps of 1 and di-1 a, Schematic... | Download Scientific Diagram

Nanomaterials | Free Full-Text | TAO-DFT Study on the Electronic Properties  of Diamond-Shaped Graphene Nanoflakes
Nanomaterials | Free Full-Text | TAO-DFT Study on the Electronic Properties of Diamond-Shaped Graphene Nanoflakes

Effect of Li Adsorption on the Electronic and Hydrogen Storage Properties  of Acenes: A Dispersion-Corrected TAO-DFT Study | Scientific Reports
Effect of Li Adsorption on the Electronic and Hydrogen Storage Properties of Acenes: A Dispersion-Corrected TAO-DFT Study | Scientific Reports

Substituent effect on the spin state of the graphene nanoflakes - RSC  Advances (RSC Publishing) DOI:10.1039/C6RA14279F
Substituent effect on the spin state of the graphene nanoflakes - RSC Advances (RSC Publishing) DOI:10.1039/C6RA14279F

Electronic Properties of Zigzag Graphene Nanoribbons Studied by TAO-DFT |  Journal of Chemical Theory and Computation
Electronic Properties of Zigzag Graphene Nanoribbons Studied by TAO-DFT | Journal of Chemical Theory and Computation

Focal Point Analysis of the Singlet–Triplet Energy Gap of Octacene and  Larger Acenes | The Journal of Physical Chemistry A
Focal Point Analysis of the Singlet–Triplet Energy Gap of Octacene and Larger Acenes | The Journal of Physical Chemistry A