793728
1,3,5,7-Tetramethyl-8-phenyl-4,4-difluoroboradiazaindacene
97%
동의어(들):
BODIPY dye, Boron dipyrromethene fluorophore, Difluoro{2-[(3,5-dimethyl-2H-pyrrol-2-ylidene-N)phenylmethyl]-3,5-dimethyl-1H-pyrrolato-N}boron
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모든 사진(1)
About This Item
실험식(Hill 표기법):
C19H19BF2N2
CAS Number:
Molecular Weight:
324.18
MDL number:
UNSPSC 코드:
12352103
PubChem Substance ID:
NACRES:
NA.23
추천 제품
Quality Level
분석
97%
양식
powder
mp
174-179 °C
형광
λex 326 nm; λem 515 nm
SMILES string
FB(F)N1C(/C(C2=CC=CC=C2)=C3N=C(C)C=C\3C)=C(C)C=C1C
InChI
1S/C19H19BF2N2/c1-12-10-14(3)23-18(12)17(16-8-6-5-7-9-16)19-13(2)11-15(4)24(19)20(21)22/h5-11H,1-4H3/b18-17-
InChI key
CMLQGCANJGWRFY-ZCXUNETKSA-N
일반 설명
1,3,5,7-Tetramethyl-8-phenyl-4,4-difluoroboradiazaindacene (BODIPY) is a difluoroboradiaza-s-indacene derivative that has high absorption coefficient and quantum yield with photonic properties. It is used as an acceptor molecule that facilitates the formation of fluorescent probes.
애플리케이션
BODIPY can be used as an electron donor for thiol-based probes for fluorescent imaging of cellular thiols. It may also be used as a modified dye in the fabrication of organic light emitting diodes (OLEDs).
BODIPY laser dyes are used to generate fluorescent conjugates of proteins, nucleotides, oligonucleotides, and dextrans, and to prepare fluorescent enzyme substrates, fatty acids, phospholipids, lipopolysaccharides, receptor ligands, and polystyrene microspheres.
신호어
Warning
유해 및 위험 성명서
Hazard Classifications
Eye Irrit. 2 - Skin Irrit. 2 - STOT SE 3
표적 기관
Respiratory system
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Flash Point (°F)
Not applicable
Flash Point (°C)
Not applicable
Ultrafast charge transfer in amino-substituted boron dipyrromethene dyes and its inhibition by cation complexation: a new design concept for highly sensitive fluorescent probes
Kollmannsberger M, et al.
The Journal of Physical Chemistry A, 102(50), 10211-10220 (1998)
Jessica P Otis et al.
American journal of physiology. Gastrointestinal and liver physiology, 316(3), G350-G365 (2019-01-11)
Difficulty in imaging the vertebrate intestine in vivo has hindered our ability to model nutrient and protein trafficking from both the lumenal and basolateral aspects of enterocytes. Our goal was to use live confocal imaging to increase understanding of intestinal
Xiaotong Su et al.
Animals : an open access journal from MDPI, 9(12) (2019-12-15)
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Petr Kovaříček et al.
ACS nano, 12(7), 7141-7147 (2018-06-12)
Manipulating nanoscopic objects by external stimuli is the cornerstone of nanoscience. Here, we report the implementation of dynamic covalent chemistry in the reversible binding and directional motion of fluorescent nanodiamond particles at a functionalized graphene surface via imine linkages. The
Beatrise Berzina et al.
Lab on a chip, 19(13), 2233-2240 (2019-06-05)
Ion concentration polarization (ICP) has been broadly applied to accomplish electrokinetic focusing of charged species. However, ICP-based extraction and enrichment of uncharged (neutral) compounds, important for pharmaceutical, biological, and environmental applications, has not yet been reported. Here, we report the
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