Polydiacetylene (PDA) vesicles have been applied as optical sensors in different areas, although there are difficulties in controlling their responses. In this study, we prepared nanoblends of PDA with triblock copolymers (TC) as a better sensor system for detecting temperature change. The influences of diacetylene (DA) monomer, and the TC chemical structure and concentration on the colorimetric response (CR) were examined. The TC/PDA nanoblend was remarkably more sensitive to temperature change, than classical vesicles. A higher L64 concentration of 12.0% (w/w) reduced the chromatic transition temperature (Ttr) to as low as 24 °C. When using different TCs, the Ttr values can be ordered as L35 < F68< L64 < F127<P123, indicating the importan...
Molecular self‐assembly has significant potential in the field of sensing. Polydiacetylenes (PDAs) a...
Molecular self‐assembly has significant potential in the field of sensing. Polydiacetylenes (PDAs) a...
A poly[(2-ethyl-2-oxazoline)-ran-(2-nonyl-2-oxazoline)] copolymer in combination with hydroxypropyla...
Polydiacetylene (PDA) vesicles have been applied as optical sensors in different areas, although the...
Owing to their stimulus responsive color changing properties, polydiacetylenes (PDAs) have been exte...
Owing to their stimulus responsive color changing properties, polydiacetylenes (PDAs) have been exte...
Owing to their stimulus responsive color changing properties, polydiacetylenes (PDAs) have been exte...
Polydiacetylene (PDA) and triblock copolymer nanoblends were synthesized to detect micellar casein (...
Most polydiacetylenes (PDAs) have been studied as chromatic sensors or temperature indicators becaus...
Figure 1. Schematic of the PDA temperature sensor microfluidic chip. Since the pioneering discovery ...
This study demonstrates gel-to-fluid transition temperatures of polydiacetylene bilayer vesicles cou...
Recently, the development of conjugated polymers as sensing materials have gained much attention bec...
Polydiacetylenes (PDAs) exhibit a chromatic response to solvents, temperature, strain and other envi...
The development of Polydiacetylene (PDA) sensor due to their conjugation ability of biological or ch...
Thermal responsive polydiacetylene derived from PAMAM dendrimer (PDA-G<sub>0</sub>) was synthesized....
Molecular self‐assembly has significant potential in the field of sensing. Polydiacetylenes (PDAs) a...
Molecular self‐assembly has significant potential in the field of sensing. Polydiacetylenes (PDAs) a...
A poly[(2-ethyl-2-oxazoline)-ran-(2-nonyl-2-oxazoline)] copolymer in combination with hydroxypropyla...
Polydiacetylene (PDA) vesicles have been applied as optical sensors in different areas, although the...
Owing to their stimulus responsive color changing properties, polydiacetylenes (PDAs) have been exte...
Owing to their stimulus responsive color changing properties, polydiacetylenes (PDAs) have been exte...
Owing to their stimulus responsive color changing properties, polydiacetylenes (PDAs) have been exte...
Polydiacetylene (PDA) and triblock copolymer nanoblends were synthesized to detect micellar casein (...
Most polydiacetylenes (PDAs) have been studied as chromatic sensors or temperature indicators becaus...
Figure 1. Schematic of the PDA temperature sensor microfluidic chip. Since the pioneering discovery ...
This study demonstrates gel-to-fluid transition temperatures of polydiacetylene bilayer vesicles cou...
Recently, the development of conjugated polymers as sensing materials have gained much attention bec...
Polydiacetylenes (PDAs) exhibit a chromatic response to solvents, temperature, strain and other envi...
The development of Polydiacetylene (PDA) sensor due to their conjugation ability of biological or ch...
Thermal responsive polydiacetylene derived from PAMAM dendrimer (PDA-G<sub>0</sub>) was synthesized....
Molecular self‐assembly has significant potential in the field of sensing. Polydiacetylenes (PDAs) a...
Molecular self‐assembly has significant potential in the field of sensing. Polydiacetylenes (PDAs) a...
A poly[(2-ethyl-2-oxazoline)-ran-(2-nonyl-2-oxazoline)] copolymer in combination with hydroxypropyla...