We prepared a new library of 160 compounds by conjugation of a BODIPY Core to a collection of aldehydes. This library was screened against 52 biologically relevant analytes and we identified one fluorescent sensor of fructose (Fructose Orange). Fructose Orange showed a 24-fold fluorescence increase upon recognition of fructose and an outstanding selectivity among 24 different saccharides. NMR studies confirmed that five different binding interactions were formed between the sensor and fructose. Furthermore, Fructose Orange was applied to the quantification of fructose in soft drinks, being the most selective fluorescent sensor for fructose reported to date.1126sciescopu
WOS: 000468747300016BODIPY dyes are strongly fluorescent small molecules widely used in fluorescence...
BODIPY dyes are strongly fluorescent small molecules widely used in fluorescence sensing various ana...
Designing organic saccharide sensors for use in aqueous solution is a nontrivial endeavor. Incorpora...
We prepared a new library of 160 compounds by conjugation of a BODIPY core to a collection of aldehy...
Abstract: A new saccharides sensor based on the TTF-anthracene dyad with two boronic acid (2) groups...
The process of detecting monosaccharides is useful in tracking and getting fast results about the pr...
The process of detecting monosaccharides is useful in tracking and getting fast results about the pr...
The process of detecting monosaccharides is useful in tracking and getting fast results about the pr...
The process of detecting monosaccharides is useful in tracking and getting fast results about the pr...
The first BODIPY library (BD) was synthesized, and a highly selective glucagon sensor, Glucagon Yell...
The diversification of the BODIPY scaffold has been hindered by its controversial adaptability to so...
BODIPY dyes are strongly fluorescent small molecules widely used in fluorescence sensing various ana...
Boronic acids in orgamc chemistry are extensively used as building blocks in coupling reactions. Mor...
BODIPY dyes are strongly fluorescent small molecules widely used in fluorescence sensing various ana...
ABSTRACT: Boronic-acid-based dyes have been widely studied in the past decade as potential sensors f...
WOS: 000468747300016BODIPY dyes are strongly fluorescent small molecules widely used in fluorescence...
BODIPY dyes are strongly fluorescent small molecules widely used in fluorescence sensing various ana...
Designing organic saccharide sensors for use in aqueous solution is a nontrivial endeavor. Incorpora...
We prepared a new library of 160 compounds by conjugation of a BODIPY core to a collection of aldehy...
Abstract: A new saccharides sensor based on the TTF-anthracene dyad with two boronic acid (2) groups...
The process of detecting monosaccharides is useful in tracking and getting fast results about the pr...
The process of detecting monosaccharides is useful in tracking and getting fast results about the pr...
The process of detecting monosaccharides is useful in tracking and getting fast results about the pr...
The process of detecting monosaccharides is useful in tracking and getting fast results about the pr...
The first BODIPY library (BD) was synthesized, and a highly selective glucagon sensor, Glucagon Yell...
The diversification of the BODIPY scaffold has been hindered by its controversial adaptability to so...
BODIPY dyes are strongly fluorescent small molecules widely used in fluorescence sensing various ana...
Boronic acids in orgamc chemistry are extensively used as building blocks in coupling reactions. Mor...
BODIPY dyes are strongly fluorescent small molecules widely used in fluorescence sensing various ana...
ABSTRACT: Boronic-acid-based dyes have been widely studied in the past decade as potential sensors f...
WOS: 000468747300016BODIPY dyes are strongly fluorescent small molecules widely used in fluorescence...
BODIPY dyes are strongly fluorescent small molecules widely used in fluorescence sensing various ana...
Designing organic saccharide sensors for use in aqueous solution is a nontrivial endeavor. Incorpora...