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151.
Preparation and characterization of green reflective films of polyaniline analogs containing azobenzene units
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Hikaru Yamada Minoru Kukino Zhi An Wang Ryo Miyabara Nobutaka Fujimoto Junpei Kuwabara Kiyoto Matsuishi Takaki Kanbara 《应用聚合物科学杂志》2015,132(2)
Pd‐catalyzed polycondensation of aniline derivatives and 4,4′‐dibromoazobenzene affords polyaniline analogs containing azobenzene units. The polymers are red in solution and in thin films state, whereas they have a green luster in thick films. Substitution of 4,4′‐dibromoazobenzene for 4,4′‐dibromostilbene changes the reflection color from green to blue, whereas the introduction of a non‐conjugated unit slightly affects the reflection color. The glossiness of the film is dependent on the smoothness of the film surface. The reflectance measurements using polarized light reveal that reflection spectra correlate well with the complex refractive index (ñ = n + ik) of the film. These results confirm that the green luster can be attributed to the uniform surface reflection of the object, which has a large refractive index and absorption coefficient at around 500 nm. The polymer films exhibit good transmission of radio frequency signals owing to the lack of free electron carriers. © 2014 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015 , 132, 41275. 相似文献
152.
There is a substantial need for photopattern‐able, heat resistant, and transparent materials that are applicable to electronic devices, such as imaging or display elements. Styryl silsesquioxane based photoresist forms thin micro patterns after i‐line exposure and alkaline development, and the resulting transparent film shows remarkable heat resistance. Radicals generated from a photoinitiator induce polymerization of styryl functionality in the photoresist film to form the micropatterns. © 2014 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015 , 132, 41459. 相似文献
153.
Innovation of meaning (IoM) is one of the streams that has attracted attention in design thinking research. Inside-out envisioning aims to assist non-designer employees practice IoM in a similar manner to how visionary executives and designers perform. The process starts with exposing their intrinsic visions to innovate the dominant social or organizational meanings. This makes the employees' creativity that comes from intrinsic goals and values an important driving force of inside-out envisioning. Thus, it is crucial to foster an organizational culture that encourages employees to engage in inside-out envisioning and enhance their creativity. This study explores whether inclusion, as an organizational culture, is an antecedent of creativity in inside-out envisioning. Inclusion refers to a state in which an individual's uniqueness is valued by other group members and externalized to improve group performance. Based on data from a survey conducted with 1104 Japanese employees, this study reveals that inclusion significantly impacts creativity in inside-out envisioning. A multigroup analysis demonstrates differences in the effects of the mediating variables of this relationship based on the successful experience of inside-out envisioning. This study concludes that it is important for design thinking researchers to study inclusion more deeply as a way to implement inside-out envisioning. 相似文献
154.
Hiroi Sei Kouki Oka Hikaru Sotome Hiroshi Miyasaka Norimitsu Tohnai 《Small (Weinheim an der Bergstrasse, Germany)》2023,19(36):2301887
Expression of room-temperature phosphorescence (RTP) in organic materials requires complicated molecular design and specific intermolecular interactions, and therefore types of RTP materials are restricted. This work presents cage-like sodalite-type porous organic salts (s-POSs) as host materials for luminescent molecules to induce RTP, using tetrasulfonic acid with an adamantane core and triphenylmethylamines that are modified with substituents in the para-positions of benzene rings (TPMA-X). By adding a representative luminescent molecule (pyrene) to a reaction solution during construction of s-POSs, the molecule is incorporated in a facile manner. s-POSs with a heavy halogen atom (X: Iodine) on the pore surface give heavy atom effects, suppression of thermal vibration, and protection from oxygen, for the incorporated molecule, which induce its RTP even in air. This strategy can be applied to various luminescent molecules, which may lead to the achievement of RTP of various colors. 相似文献