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组装合成超分子液晶聚合物动态功能材料 被引量:12
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作者 谌东中 万雷 +1 位作者 方江邻 余学海 《高分子通报》 CAS CSCD 2002年第3期5-18,共14页
从电荷转移相互作用、离子相互作用及氢键组装三个方面综述了通过分子自组装合成超分子液晶聚合物近年来的最新研究成果 ,总结了这类体系作为动态功能材料在器件化及应用方面所取得的重要进展 。
关键词 合成 液晶聚合物 超分子化学 自组装 动态功能材料 非共价键 电荷转移 氢键 离子相互作用
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Dynamic metal patterns of wrinkles based on photosensitive layers 被引量:3
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作者 Shuai Chen Kaiming Hu +5 位作者 Shuzhen Yan Tianjiao Ma Xinlu Deng Wenming Zhang Jie Yin Xuesong Jiang 《Science Bulletin》 SCIE EI CAS CSCD 2022年第21期2186-2195,共10页
Regulating metal surfaces with micro-/nanoscale structures is of great significance for both material science and potential applications.However,the intrinsic properties of metals,such as fixed isotropic moduli and in... Regulating metal surfaces with micro-/nanoscale structures is of great significance for both material science and potential applications.However,the intrinsic properties of metals,such as fixed isotropic moduli and inflexible structures,in a sense present major limitations in developing next-generation smart patterned surfaces.In this work,a facile and general patterning strategy is proposed to endow insensitive metal surfaces with controllable spontaneous topologies and dynamic performance by exquisitely introducing an essential photosensitive interlayer.The arresting anthracene-containing photocrosslinking interlayer can selectively predetermine the anisotropic property of compliant bilayers without damaging metals’homogeneous properties,and realize a changeable stiff/soft layer.Furthermore,the mechanical transition mechanism of the self-adaptive wrinkling modes in metalbased trilayer systems is revealed to pave the pathway for regulating functional wrinkled metal surfaces.This photodriven metal patterning strategy can promote the development of brand-new methods for tuning the instability of multilayered materials,and be potentially applied in smart optical devices with dynamic reflectance,including light gratings and"magic"mirrors. 展开更多
关键词 Smart surfaces Dynamic metal patterning Self-adaptive wrinkling Multilayered systems Optical devices
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