2023
DOI: 10.1002/adfm.202214394
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Light‐Fueled Nonequilibrium and Adaptable Hydrogels for Highly Tunable Autonomous Self‐Oscillating Functions

Abstract: Nonequilibrium oscillation fueled by dissipating chemical energy is ubiquitous in living systems for realizing a broad range of complex functions. The design of synthetic materials that can mimic their biological counterparts in the production of dissipative structures and autonomous oscillations is of great interest but remains challenging. Here, a series of environmentally adaptable hydrogels functionalized with photoswitchable spiropyran derivatives that display a tunable equilibrium‐shifting capability, th… Show more

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Cited by 18 publications
(18 citation statements)
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“…However, we failed to obtain the p K a h ν of compound 6 as the irradiation intensity in our experiment is unable to drive the full isomerization of MCH to the cis -MCH and SP isomers (Figure S18). This phenomenon has also been reported previously in the literature, where the electron-donating methoxy substituent in the chromene ring favorably shifts the equilibrium to the protonated MCH form …”
Section: Results and Discussionsupporting
confidence: 88%
See 2 more Smart Citations
“…However, we failed to obtain the p K a h ν of compound 6 as the irradiation intensity in our experiment is unable to drive the full isomerization of MCH to the cis -MCH and SP isomers (Figure S18). This phenomenon has also been reported previously in the literature, where the electron-donating methoxy substituent in the chromene ring favorably shifts the equilibrium to the protonated MCH form …”
Section: Results and Discussionsupporting
confidence: 88%
“…This phenomenon has also been reported previously in the literature, where the electrondonating methoxy substituent in the chromene ring favorably shifts the equilibrium to the protonated MCH form. 48 We studied the light-induced pH changes of photoacid 5 by varying its concentrations in an aqueous environment at 25 °C (Figure S19). The solution is incubated in the dark to reach an equilibrium pH value before irradiation with visible light.…”
Section: ■ Results and Discussionmentioning
confidence: 99%
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“…Recently, the researchers designed a photocontrolled non-equilibrium hydrogel with complex actuation behavior by introducing spiropyran into the designed hydrogels. [162] They modified different electron donor groups on spiropyran to regulate the rate of its spontaneous ring-opening processes and create metastable states, Figure 21E. Such design endows the hydrogels with adaptable photo-triggered oscillatory behavior to change shapes through asymmetric deswelling under light irradiation, Figure 21F.…”
Section: Applicationsmentioning
confidence: 99%
“…The combination of two pH‐responsive gels constitutes a jellyfish‐like functional structure with synergistic color change and shape deformation, opening pathways for out‐of‐equilibrium actuators with sophisticated and dynamic functions, Figure 21C–D. Recently, the researchers designed a photo‐controlled non‐equilibrium hydrogel with complex actuation behavior by introducing spiropyran into the designed hydrogels [162] . They modified different electron donor groups on spiropyran to regulate the rate of its spontaneous ring‐opening processes and create metastable states, Figure 21E.…”
Section: Applicationsmentioning
confidence: 99%