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861.
Shunto Arai Satoru Inoue Takamasa Hamai Reiji Kumai Tatsuo Hasegawa 《Advanced materials (Deerfield Beach, Fla.)》2018,30(23)
A unique solution‐based technology to manufacture self‐assembled ultrathin organic‐semiconductor layers with ultrauniform single‐molecular‐bilayer thickness over an area as large as wafer scale is developed. A novel concept is adopted in this technique, based upon the idea of geometrical frustration, which can effectively suppress the interlayer stacking (or multilayer crystallization) while maintaining the assembly of the intralayer, which originates from the strong intermolecular interactions between π‐conjugated molecules. For this purpose, a mixed solution of extended π‐conjugated frameworks substituted asymmetrically by alkyl chains of variable lengths (i.e., (πCore)‐Cn's) is utilized for the solution process. A simple blade‐coating with a solution containing two (πCore)‐Cn's with different alkyl chain lengths is effective to provide single molecular bilayers (SMBs) composed of a pair of polar monomolecular layers, which is analogical to the cell membranes of living organisms. It is demonstrated that the chain‐length disorder does not perturb the in‐plane crystalline order, but acts effectively as a geometrical frustration to inhibit multilayer crystallization. The uniformity, stability, and size scale are unprecedented, as produced by other conventional self‐assembly processes. The obtained SMBs also exhibit efficient 2D carrier transport as organic thin‐film transistors. This finding should open a new route to SMB‐based ultrathin superflexible electronics. 相似文献
862.
Yushi Abe Daigo Ochiai Masako Taguchi Seiji Kanzaki Satoru Ikenoue Yoshifumi Kasuga Mamoru Tanaka 《International journal of molecular sciences》2022,23(12)
Mesenchymal stem cells (MSCs) affect immune cells and exert anti-inflammatory effects. Human amniotic fluid stem cells (hAFSCs), a type of MSCs, have a high therapeutic effect in animal models of inflammation-related diseases. hAFSCs can be easily isolated and cultured from amniotic fluid, which is considered a medical waste. Hence, amniotic fluid can be a source of cells for MSC therapy of inflammatory diseases. However, the effect of hAFSCs on acquired immunity in vivo, especially on regulatory T cells, has not yet been fully elucidated. Therefore, in this study, we aimed to understand the effects of hAFSCs on acquired immunity, particularly on regulatory T cells. We showed that hAFSCs ameliorated the thioglycollate-induced inflammation by forming aggregates with host immune cells, such as macrophages, T cells, and B cells in the peritoneal cavity. Further, the regulatory T cells increased in the peritoneal cavity. These results indicated that, in addition to helping the innate immunity, hAFSCs could also aid the acquired immune system in vivo against inflammation-related diseases by increasing regulatory T cells. 相似文献
863.
Nguyen Chi Trung Ngo Hironari Sugiyama Buddhika Amila Kumara Sodige Juan Paulo Wiff Satoru Yamanaka Yoonho Kim Tsuneo Suzuki Masaaki Baba Masatoshi Takeda Noboru Yamada Koichi Niihara Tadachika Nakayama 《Journal of the American Ceramic Society》2023,106(1):201-212
The energy-harvesting ability of the lead-free ferroelectric Ba(Zr,Ti)O3 was investigated and greatly enhanced using the Kim novel electrothermodynamic cycle for low-temperature application. Ba(Zr,Ti)O3 was synthesized with a Zr:Ti ratio of 10:90 (BZT10) by hot-press sintering, which exhibited a mix relaxor-ferroelectric behavior. For power generation using the Kim cycle with low and high temperatures of TL = 25°C, TH = 120°C, the most optimized temperature pattern occurred for a heating time of 12.5 s and a cooling time of 22.5 s. Under these conditions, the electric field increased during the novel isodisplacement process, and the displacement variation in the isoelectric step reached the highest value and maximized the BZT10 cycle loop area. Applying these conditions while lowering TL to 20°C, an energy density ND = 504 mJ/cm3 was achieved. This value is the highest obtained energy density in a practical test for lead-free ferroelectric bulk material in the BaTiO3 family. 相似文献
864.
Matsuda Yoshitaka Wada Yuya Sugi Takenao Goto Satoru Egashira Naruto 《Artificial Life and Robotics》2023,28(1):236-243
Artificial Life and Robotics - In this paper, using image processing and distance measurement, we develop a control system for automatic grasping and obstacle avoidance by a mobile robot. First,... 相似文献
865.
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