6-Aminofluorescein
Suppliers
Names
[ CAS No. ]:
51649-83-3
[ Name ]:
6-Aminofluorescein
[Synonym ]:
Fluoresceinamine (isomer II)
5-amino-3',6'-dihydroxyspiro[2-benzofuran-3,9'-xanthene]-1-one
6-Amino-3',6'-dihydroxy-3H-spiro[2-benzofuran-1,9'-xanthen]-3-one
6-Amino-3',6'-dihydroxy-3H-spiro[isobenzofuran-1,9'-xanthen]-3-one
Spiro[isobenzofuran-1(3H),9'-[9H]xanthen]-3-one, 6-amino-3',6'-dihydroxy-
6-Amino-3',6'-dihydroxyspiro[isobenzofuran-1(3H),9'-(9H)xanthen]-3-one (isomer II)
MFCD00005051
6-Amino-3',6'-dihydroxyspiro(isobenzofuran-1(3H),9'-(9H)xanthene)-3-one
Spiro(isobenzofuran-1(3H),9'-(9H)xanthen)-3-one, 6-amino-3',6'-dihydroxy-
EINECS 257-334-7
Fluoresceinamine isomer II
Chemical & Physical Properties
[ Density]:
1.6±0.1 g/cm3
[ Boiling Point ]:
706.7±60.0 °C at 760 mmHg
[ Melting Point ]:
285 °C (dec.)(lit.)
[ Molecular Formula ]:
C20H13NO5
[ Molecular Weight ]:
347.321
[ Flash Point ]:
381.2±32.9 °C
[ Exact Mass ]:
347.079376
[ PSA ]:
102.01000
[ LogP ]:
2.20
[ Vapour Pressure ]:
0.0±2.3 mmHg at 25°C
[ Index of Refraction ]:
1.820
[ Storage condition ]:
2-8°C
[ Stability ]:
Light and Moisture Sensitive
MSDS
Safety Information
[ Symbol ]:
GHS07
[ Signal Word ]:
Warning
[ Hazard Statements ]:
H315-H319-H335
[ Precautionary Statements ]:
P261-P305 + P351 + P338
[ Personal Protective Equipment ]:
dust mask type N95 (US);Eyeshields;Gloves
[ Hazard Codes ]:
Xi: Irritant;
[ Risk Phrases ]:
R36/37/38
[ Safety Phrases ]:
S26-S36
[ RIDADR ]:
NONH for all modes of transport
[ WGK Germany ]:
3
Synthetic Route
Precursor & DownStream
Precursor
DownStream
Articles
Small 11 , 4540-8, (2015)
Patchy particles are next generation colloidal building blocks for self-assembly and find further use as (bio) sensors. Progress in this direction crucially depends on developing straightforward prepa...
ACS Nano 9 , 8269-78, (2015)
Polyelectrolyte microcapsules represent versatile stimuli-responsive structures that enable the encapsulation, protection, and release of active agents. Their conventional preparation methods, however...
ACS Appl. Mater. Interfaces 7 , 23993-4000, (2015)
Although computer simulation and cell culture experiments have shown that elongated spherical particles can be taken up into cells more efficiently than spherical particles, experimental investigation...