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Color Tuning in rhodopsins: the origin of the spectral shift between the chloride-bound and anion-free forms of halorhodopsin.Firefly chemiluminescence and bioluminescence: efficient generation of excited states.Oxyluciferin photoacidity: the missing element for solving the keto-enol mystery?Emission shaping in fluorescent proteins: role of electrostatics and π-stacking.Quantum mechanical molecular interactions for calculating the excitation energy in molecular environments: a first-order interacting space approach.All-Optical Sensing of the Components of the Internal Local Electric Field in Proteins.Are the bio- and chemiluminescence states of the firefly oxyluciferin the same as the fluorescence state?A theoretical analysis of the potential role of π-π stacking interactions in the photoprotolytic cycle of firefly luciferin.Electron density deformations provide new insights into the spectral shift of rhodopsins.Unrestricted density functional theory based on the fragment molecular orbital method for the ground and excited state calculations of large systems.Analysis of computational models for an accurate study of electronic excitations in GFP.Local electric fields and molecular properties in heterogeneous environments through polarizable embedding.
P2860
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P2860
description
article científic
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article scientifique
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articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
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artigo científico
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artikel ilmiah
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artikull shkencor
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artículo científico
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name
Color tuning in photofunctional proteins.
@en
Color tuning in photofunctional proteins.
@nl
type
label
Color tuning in photofunctional proteins.
@en
Color tuning in photofunctional proteins.
@nl
prefLabel
Color tuning in photofunctional proteins.
@en
Color tuning in photofunctional proteins.
@nl
P2860
P356
P1433
P1476
Color tuning in photofunctional proteins.
@en
P2093
Hiroshi Nakatsuji
Jun-ya Hasegawa
P2860
P304
P356
10.1002/CPHC.201100452
P577
2011-10-11T00:00:00Z