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A comparison of singlet and triplet states for one- and two-dimensional  graphene nanoribbons using multireference theory
A comparison of singlet and triplet states for one- and two-dimensional graphene nanoribbons using multireference theory

Singlet-triplet energy gap of n-cyclacene/n-acene as a function of the... |  Download Scientific Diagram
Singlet-triplet energy gap of n-cyclacene/n-acene as a function of the... | 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

Energy ordering of singlet and triplet excited states in  indacenodithiophene and indenofluorenes molecules in singlet fission: A  model exact and density matrix renormalization group study - ScienceDirect
Energy ordering of singlet and triplet excited states in indacenodithiophene and indenofluorenes molecules in singlet fission: A model exact and density matrix renormalization group study - ScienceDirect

A comparison of singlet and triplet states for one- and two-dimensional  graphene nanoribbons using multireference theory | SpringerLink
A comparison of singlet and triplet states for one- and two-dimensional graphene nanoribbons using multireference theory | SpringerLink

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

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

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

Singlet-triplet energy gap of n-cyclacene/n-acene as a function of the... |  Download Scientific Diagram
Singlet-triplet energy gap of n-cyclacene/n-acene as a function of the... | Download Scientific Diagram

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

A comparison of singlet and triplet states for one- and two-dimensional  graphene nanoribbons using multireference theory
A comparison of singlet and triplet states for one- and two-dimensional graphene nanoribbons using multireference theory

Plot of the singlet HOMO-LUMO energy gaps versus the ribbon length N.... |  Download Scientific Diagram
Plot of the singlet HOMO-LUMO energy gaps versus the ribbon length N.... | 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

Figure S4: (a) Optical spectra of N =7 graphene nanoflakes fully... |  Download Scientific Diagram
Figure S4: (a) Optical spectra of N =7 graphene nanoflakes fully... | 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

A comparison of singlet and triplet states for one- and two-dimensional  graphene nanoribbons using multireference theory | SpringerLink
A comparison of singlet and triplet states for one- and two-dimensional graphene nanoribbons using multireference theory | SpringerLink

NMR spectral parameters of open- and closed-shell graphene nanoflakes:  Orbital and hyperfine contributions - ScienceDirect
NMR spectral parameters of open- and closed-shell graphene nanoflakes: Orbital and hyperfine contributions - ScienceDirect

Mechanism of Li storage on graphene nanoflakes: Density functional theory  study - ScienceDirect
Mechanism of Li storage on graphene nanoflakes: Density functional theory study - ScienceDirect

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

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

A comparison of singlet and triplet states for one- and two-dimensional  graphene nanoribbons using multireference theory | SpringerLink
A comparison of singlet and triplet states for one- and two-dimensional graphene nanoribbons using multireference theory | SpringerLink

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

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

Singlet-triplet DE 1,3 (E 3 -E 1 ), Triplet-quintet DE 3,5 (E 5 -E 3 )... |  Download Scientific Diagram
Singlet-triplet DE 1,3 (E 3 -E 1 ), Triplet-quintet DE 3,5 (E 5 -E 3 )... | Download Scientific Diagram