Simply by mixing in water, a liphophilic dipeptide (L), a surfactant (S), and a fluorophore (F) self-assemble to give a sensor able to detect CuII ions (see scheme). Despite the ease of construction, the sensor displays high selectivity and a low detection limit for the target ion. This new modular approach to sensing devices allows easy variations of the components, making optimization of the system very simple and fast
Copper(II), Cu2+, ion plays not only a fundamental role to sustain important physiological processes...
UIDB/50006/2020 SFRH/BD/120985/2016 Project LISBOA-01-0145-FEDER-007660 PPBI-POCI-01-0145-FEDER-0221...
A new water-soluble, multisite-coordinating ligand LH<sub>7</sub> was prepared by the condensation o...
The self-assembling of the proper subunits of fluorescence chemosensors within surfactant aggregates...
Ion sensors particularly organic fluorescent chemo sensors are very much researched in recent times ...
A new chemosensor for the Cu(II) ion has been realized by connecting via an amido bond an anthraceny...
The production of fluorescent devices for the sensing and reporting of chemical events is currently...
A new terephthaldehyde-based chemosensor 1 bearing an aminophenol recognition unit has been synthesi...
A new turn-on Cu2+ fluorescent sensor (CST) having a trehalose moiety, which confers a relatively la...
Water-soluble naphthalene diimide based fluorescent chemosensor, N1, was designed for Cu2+ recogniti...
Cu(II) ion has two sides. In one side, Cu(II) ion is an important cofactor in nearly 20 metalloenzym...
We report a nanopore-based Cu(II) sensing system which allows for an ultrasensitive and selective de...
Small molecules can display certain electronic and structural features that enable their use for met...
Highly sensitive plasmonic optical fiber platforms combined with receptors have been recently used t...
The design and synthesis of selective and sensitive chemosensors for the quantification of environme...
Copper(II), Cu2+, ion plays not only a fundamental role to sustain important physiological processes...
UIDB/50006/2020 SFRH/BD/120985/2016 Project LISBOA-01-0145-FEDER-007660 PPBI-POCI-01-0145-FEDER-0221...
A new water-soluble, multisite-coordinating ligand LH<sub>7</sub> was prepared by the condensation o...
The self-assembling of the proper subunits of fluorescence chemosensors within surfactant aggregates...
Ion sensors particularly organic fluorescent chemo sensors are very much researched in recent times ...
A new chemosensor for the Cu(II) ion has been realized by connecting via an amido bond an anthraceny...
The production of fluorescent devices for the sensing and reporting of chemical events is currently...
A new terephthaldehyde-based chemosensor 1 bearing an aminophenol recognition unit has been synthesi...
A new turn-on Cu2+ fluorescent sensor (CST) having a trehalose moiety, which confers a relatively la...
Water-soluble naphthalene diimide based fluorescent chemosensor, N1, was designed for Cu2+ recogniti...
Cu(II) ion has two sides. In one side, Cu(II) ion is an important cofactor in nearly 20 metalloenzym...
We report a nanopore-based Cu(II) sensing system which allows for an ultrasensitive and selective de...
Small molecules can display certain electronic and structural features that enable their use for met...
Highly sensitive plasmonic optical fiber platforms combined with receptors have been recently used t...
The design and synthesis of selective and sensitive chemosensors for the quantification of environme...
Copper(II), Cu2+, ion plays not only a fundamental role to sustain important physiological processes...
UIDB/50006/2020 SFRH/BD/120985/2016 Project LISBOA-01-0145-FEDER-007660 PPBI-POCI-01-0145-FEDER-0221...
A new water-soluble, multisite-coordinating ligand LH<sub>7</sub> was prepared by the condensation o...