![]() BHHCT structure
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Common Name | BHHCT | ||
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CAS Number | 200862-70-0 | Molecular Weight | 804.93200 | |
Density | 1.54g/cm3 | Boiling Point | 615.893ºC at 760 mmHg | |
Molecular Formula | C30H15ClF14O6S | Melting Point | N/A | |
MSDS | Chinese USA | Flash Point | 326.281ºC | |
Symbol |
![]() GHS07 |
Signal Word | Warning |
Preparation and a time-resolved fluoroimmunoassay application of new europium fluorescent nanoparticles.
Anal. Sci. 20 , 245, (2004) New silica-based europium fluorescent nanoparticles having surface amino groups were prepared by a covalent binding-copolymerization technique. In the nanoparticles, the fluorescent Eu3+ chelate molecules were covalently bound to silicon atoms to protect the ... |
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Development of a visible-light-sensitized europium complex for time-resolved fluorometric application.
Anal. Chem. 82 , 2529-2535, (2010) The time-resolved luminescence bioassay technique using luminescent lanthanide complexes as labels is a highly sensitive and widely used bioassay method for clinical diagnostics and biotechnology. A major drawback of the current technique is that the luminesc... |
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Europium chelate (BHHCT-Eu3+) and its metal nanostructure enhanced luminescence applied to bioassays and time-gated bioimaging.
Langmuir 26 , 10036-10043, (2010) We report the use of europium chelate, 4,4'-bis(1'',1'',1'',2'',2'',3'',3''-heptafluoro-4'',6''-hexanedion-6''-yl)chlorosulfo-o-terphenyl-Eu(3+) (BHHCT-Eu(3+)), in silver nanostructure-enhanced luminescence and its application to bioassays and bioimaging. The... |
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Preparation of europium-quantum dots and europium-fluorescein composite nanoparticles available for ratiometric luminescent detection of metal ions.
Nanotechnology 21 , 395504, (2010) The silica-encapsulated luminescent lanthanide nanoparticles have been developed for the selective tagging of a wide range of important targets in recent years, however, they are mainly limited to europium and terbium compounds. In this work, two types of eur... |
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Yuan, J., et al
Anal. Sci. 14 , 421, (1998)
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Yoshikawa, K., et al.
Anal. Sci. 15 , 121, (1999)
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