2 research outputs found
OFF-ON-OFF Fluorescence Switch with T-Latch Function
A novel molecular system with characteristics of an OFF-ON-OFF fluorescence switch was designed to integrate the function of a T-latch. In detail, a receptor<sub>1</sub>-fluorophore-receptor<sub>2</sub> architecture was adopted to achieve fluorescence switching upon addition of protons
Electronic and Functional Scope of Boronic Acid Derived Salicylidenehydrazone (BASHY) Complexes as Fluorescent Dyes
A series of boronic
acid derived salicylidenehydrazone (BASHY)
complexes was prepared and photophysically characterized. The dye
platform can be modified by (a) electronic tuning along the cyanine-type
axis via modification of the donorâacceptor pair and (b) functional
tuning via the boronic acid residue. On the one hand, approach (a)
allows the control of photophysical parameters such as Stokes shift,
emission color, and two-photon-absorption (2PA) cross section. The
resulting dyes show emission light-up behavior in nonpolar media and
are characterized by high fluorescence quantum yields (ca. 0.5â0.7)
and brightness (ca. 35000â40000 M<sup>â1</sup> cm<sup>â1</sup>). Moreover, the 2PA cross sections reach values in
the order of 200â300 GM. On the other hand, the variation of
the dye structure through the boronic acid derived moiety (approach
(b)) enables the functionalization of the BASHY platform for a broad
spectrum of potential applications, ranging from biorelevant contexts
to optoelectronic materials. Importantly, this functionalization is
generally electronically orthogonal with respect to the dyeâs
photophysical properties, which are only determined by the electronic
structure of the cyanine-type backbone (approach (a)). Rare exceptions
to this generalization are the presence of redox-active residues (such
a triphenylamine or pyrene). Finally, the advantageous photophysics
is complemented by a significant photostability