Solid-state photoswitching in arylazopyrazole-embedded polydimethylsiloxane composite thin films

被引:8
|
作者
Ghebreyessus, Kesete [1 ]
Uba, Ikemefuna [2 ,3 ]
Geddis, Demetris [2 ,3 ]
Hommerich, Uwe [4 ]
机构
[1] Hampton Univ, Dept Chem & Biochem, 200 William R Harvey Way, Hampton, VA 23668 USA
[2] Dept Elect & Comp Engn, Hampton, VA 23668 USA
[3] Hampton Univ, Hampton, VA 23668 USA
[4] Hampton Univ, Dept Phys, Hampton, VA 23668 USA
基金
美国国家科学基金会;
关键词
Solid-state photoswitching; Arylazopyrazole; Photoresponsive composite thin films; Photoactuator; CONTROLLED-RELEASE; AZOBENZENE; ISOMERIZATION; PDMS; SURFACES; PROTEIN; GEL;
D O I
10.1016/j.jssc.2021.122519
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Arylazopyrazoles (AAPs) show significant potential as a new family of molecular photoswitches owing to their efficient reversible trans-to-cis photoisomerization behavior and the high thermal stability of their metastable cis-isomer. In this study, AAPs have been used for the fabrication of solid-state photoswitchable polydimethylsiloxane (PDMS) based composite thin films. The thin films were prepared by using PDMS as a polymer matrix and different concentrations of AAPs as chromophores at 150 degrees C via spin-coating. The photoswitching behavior of the AAPPDMS composite films and the pristine AAP samples induced by irradiation with specific wavelength of light were investigated. We found that the as prepared AAPPDMS composite films showed rapid and near-quantitative (>98%) reversible trans -to- cis isomerization upon alternating irradiation with UV (lambda = 365 nm) and green (lambda = 525 nm) light which is comparable to the isomerization behavior of the pristine AAP chromophores in solution. This indicates that the excellent photoswitching property of the AAPs is preserved in the solid-state of the AAP-PDMS composite films. The results also show that the optical properties of the AAPPDMS composite films can be tuned by using different ratios of the AAP chromophores and exposure to UVlight irradiation. Additionally, the thin films were tested for their photo-actuation behavior by UV-vis spectroscopy. Irradiation of the thin film with alternating 365 nm UV and 525 nm green light lead to a slight reversible bending behavior. This is presumably caused by the light-induced conformational change of the AAP moiety embedded within the PDMS matrix and the soft nature of the PDMS. This methodology provides a new approach for exploring the fabrication of polymers with enhanced mechanical behavior and solidstate photoswitching properties. Arylazopyrazoles (AAPs) show significant potential as a new family of molecular photoswitches owing to their efficient reversible trans-tocis photoisomerization behavior and the high thermal stability of their metastable cis - isomer. In this study, AAPs have been used for the fabrication of solid-state photoswitchable polydimethylsiloxane (PDMS) based composite thin films. The thin films were prepared by using PDMS as a polymer matrix and different concentrations of AAPs as chromophores at 150 degrees C via spin-coating. The photoswitching behavior of the AAP-PDMS composite films and the pristine AAP samples induced by irradiation with specific wavelength of light were investigated. We found that the as prepared AAP-PDMS composite films showed rapid and near-quantitative (>98%) reversible trans-to-cis isomerization upon alternating irradiation with UV (lambda = 365 nm) and green (lambda = 525 nm) light which is comparable to the isomerization behavior of the pristine AAP chromophores in solution. This indicates that the excellent photoswitching property of the AAPs is preserved in the solid-state of the AAP-PDMS composite films. The results also show that the optical properties of the AAPPDMS composite films can be tuned by using different ratios of the AAP chromophores and exposure to UVlight irradiation. Additionally, the thin films were tested for their photo-actuation behavior by UV-vis spectroscopy. Irradiation of the thin film with alternating 365 nm UV and 525 nm green light lead to a slight reversible bending behavior. This is presumably caused by the light-induced conformational change of the AAP moiety embedded within the PDMS matrix and the soft nature of the PDMS. This methodology provides a new approach for exploring the fabrication of polymers with enhanced mechanical behavior and solid-state photoswitching properties.
引用
收藏
页数:8
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