Home

vzrušení odstín Záď graphene nanoflakes singlet triplet gap Desetinný právní Pekařství

Electronic structure of boron and nitrogen doped isomeric graphene  nanoflakes - ScienceDirect
Electronic structure of boron and nitrogen doped isomeric graphene nanoflakes - ScienceDirect

Thermally controlling the singlet-triplet energy gap of a diradical in the  solid state. - Abstract - Europe PMC
Thermally controlling the singlet-triplet energy gap of a diradical in the solid state. - Abstract - Europe PMC

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

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

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

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

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

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

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

Polyradical Character of Triangular Non-Kekulé Structures, Zethrenes,  p-Quinodimethane-Linked Bisphenalenyl, and the Clar Goblet in Comparison:  An Extended Multireference Study. - Abstract - Europe PMC
Polyradical Character of Triangular Non-Kekulé Structures, Zethrenes, p-Quinodimethane-Linked Bisphenalenyl, and the Clar Goblet in Comparison: An Extended Multireference Study. - Abstract - Europe PMC

Optical properties of graphene nanoflakes: Shape matters: The Journal of  Chemical Physics: Vol 144, No 22
Optical properties of graphene nanoflakes: Shape matters: The Journal of Chemical Physics: Vol 144, No 22

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

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

Electronic Properties of Triangle-Shaped Graphene Nanoflakes from TAO-DFT.  - Researcher | An App For Academics
Electronic Properties of Triangle-Shaped Graphene Nanoflakes from TAO-DFT. - Researcher | An App For Academics

Edge-state-induced energy splitting of exciton triplet states in graphene  nanoflakes: Journal of Applied Physics: Vol 120, No 20
Edge-state-induced energy splitting of exciton triplet states in graphene nanoflakes: Journal of Applied Physics: Vol 120, No 20

Singlet-triplet energy gap of l-BNR[2,n]/c-BNR[2,n] ((a) n = 6–30 and... |  Download Scientific Diagram
Singlet-triplet energy gap of l-BNR[2,n]/c-BNR[2,n] ((a) n = 6–30 and... | Download Scientific Diagram

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

Topological frustration induces unconventional magnetism in a nanographene  | Nature Nanotechnology
Topological frustration induces unconventional magnetism in a nanographene | Nature Nanotechnology

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

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

Graphene-based nanomaterials: biological and medical applications and  toxicity | Nanomedicine
Graphene-based nanomaterials: biological and medical applications and toxicity | Nanomedicine

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

Plots of (a) the S-T (DE 1,3 ) and (b) T-Q (DE 3,5 ) energy differences...  | Download Scientific Diagram
Plots of (a) the S-T (DE 1,3 ) and (b) T-Q (DE 3,5 ) energy differences... | Download Scientific Diagram

Quenching of magnetism in hexagonal graphene nanoflakes by non-local  electron correlation - ScienceDirect
Quenching of magnetism in hexagonal graphene nanoflakes by non-local electron correlation - ScienceDirect