BORONDIFLUORIDE COMPLEXES OF CURCUMINOID COMPOUNDS, METHOD OF PREPARATION AND USES THEREOF
申请人:Université d'Aix Marseille
公开号:EP3173416A1
公开(公告)日:2017-05-31
The present invention relates to new borondifluoride complexes of curcuminoid compounds with an enhanced fluorescence quantum yield and emission, and their uses as fluorophore in various fields such as bioimaging, therapeutics, theranostics, display and telecommunication technologies, photovoltaics. The preparation said compounds is also described.
Sanin; Ul'janowa, Doklady Akademii Nauk SSSR, 1956, vol. 108, p. 274
作者:Sanin、Ul'janowa
DOI:——
日期:——
BORONDIFLUORIDE COMPLEXES OF CURCOMINOID COMPOUNDS, METHOD OF PREPARATION AND USES THEREOF
申请人:UNIVERSITE D'AIX MARSEILLE
公开号:US20210340163A1
公开(公告)日:2021-11-04
The present invention relates to new borondifluoride complexes of curcuminoid compounds with an enhanced fluorescence quantum yield and emission, and their uses as fluorophore in various fields such as bioimaging, therapeutics, theranostics, display and telecommunication technologies, photovoltaics. The preparation said compounds is also described.
Iodide-Selective Synthetic Ion Channels Based on Shape-Persistent Organic Cages
作者:Bahiru Punja Benke、Pulakesh Aich、Younghoon Kim、Kyung Lock Kim、Md Rumum Rohman、Soonsang Hong、In-Chul Hwang、Eun Hui Lee、Joon Ho Roh、Kimoon Kim
DOI:10.1021/jacs.7b02708
日期:2017.6.7
We report here a synthetic ion channel developed from a shape-persistent porphyrin-based covalent organic cage. The cage was synthesized by employing a synthetically economical dynamic covalent chemistry (DCC) approach. The organic cage selectively transports biologically relevant iodideionsoverother inorganic anions by a dehydration-driven, channel mechanism as evidenced by vesicle-based fluorescence