Full-color-tunable hydrogels with ultrahigh stability can be used in various fields, including intracellular temperature sensing. However, constructing full-color-tunable organic nanohydrogels with excellent biocompatibility and stability for intracellular temperature sensing remains a great challenge. Here, we report a full-color-tunable nanohydrogel with ultrahigh stability as an intracellular nanothermometer. Three types of temperature-sensitive polymers with red, green, and blue fluorescence were synthesized. Through easy mixing of these three polymers with regulation of the mass ratio, these polymers can be encoded to full-color-tunable fluorescent nanohydrogels, including nanohydrogels with white-light emission (NWLEs), with sizes of ...
In this study, thermochromic photonic gels were fabricated using 2-hydroxyethyl methacrylate (HEMA) ...
Intracellular temperature has a fundamental effect on cellular events. Herein, a novel fluorescent p...
Luminescence thermometry usually suffer from cellular complexity of the biochemical environment (suc...
Sensing temperature in biological systems is of great importance, as it is constructive to understan...
Temperature is a significant parameter to regulate biological reactions and functions inside cells. ...
Thermosensitive fluorescent dyes can convert thermal signals into optical signals as a molecular nan...
Photothermal heating with accurate monitoring of local temperature in complex biological fluids is c...
Thermoresponsive fluorescent nanospheres were prepared by entrapping fluorescent conjugated polymers...
Research into smart polymeric materials has shown promise in improving the quality of non-invasive t...
A novel hydrophilic fluorescence temperature probe (PNDP) based on polarity-sensitive triarylboron c...
Temperature dynamics reflect the physiological state of cells, and accurate measurement of intracell...
Intracellular temperature plays a prominent role in cellular functions and biochemical activities in...
Poly(N-isopropylacrylamide) (PNIPAM) is a unique stimuli-responsive material that exhibits a lower c...
Bioluminescence is widespread in nature such as the jellyfish, which inspires scientists to design p...
We report the modulation of the dual photo/thermo-responsive multicolor fluorescence from poly(N-iso...
In this study, thermochromic photonic gels were fabricated using 2-hydroxyethyl methacrylate (HEMA) ...
Intracellular temperature has a fundamental effect on cellular events. Herein, a novel fluorescent p...
Luminescence thermometry usually suffer from cellular complexity of the biochemical environment (suc...
Sensing temperature in biological systems is of great importance, as it is constructive to understan...
Temperature is a significant parameter to regulate biological reactions and functions inside cells. ...
Thermosensitive fluorescent dyes can convert thermal signals into optical signals as a molecular nan...
Photothermal heating with accurate monitoring of local temperature in complex biological fluids is c...
Thermoresponsive fluorescent nanospheres were prepared by entrapping fluorescent conjugated polymers...
Research into smart polymeric materials has shown promise in improving the quality of non-invasive t...
A novel hydrophilic fluorescence temperature probe (PNDP) based on polarity-sensitive triarylboron c...
Temperature dynamics reflect the physiological state of cells, and accurate measurement of intracell...
Intracellular temperature plays a prominent role in cellular functions and biochemical activities in...
Poly(N-isopropylacrylamide) (PNIPAM) is a unique stimuli-responsive material that exhibits a lower c...
Bioluminescence is widespread in nature such as the jellyfish, which inspires scientists to design p...
We report the modulation of the dual photo/thermo-responsive multicolor fluorescence from poly(N-iso...
In this study, thermochromic photonic gels were fabricated using 2-hydroxyethyl methacrylate (HEMA) ...
Intracellular temperature has a fundamental effect on cellular events. Herein, a novel fluorescent p...
Luminescence thermometry usually suffer from cellular complexity of the biochemical environment (suc...