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1Wearable and stretchable conductive polymer composites for strain sensors:How to design a superior one?显示文摘Wearable and stretchable strain sensors have potential values in the fields of human motion and health monitoring,flexible electronics,and soft robotic skin.The wearable and stretchable strain sensors can be directly attached to human skin,providing visualized detection for human motions and personal healthcare.Conductive polymer composites(CPC)composed of conductive fillers and flexible polymers have the advantages of high stretchability,good flexibility,superior durability,which can be used to prepare flexible strain sensors with large working strain and outstanding sensitivity.This review has put forward a comprehensive summary on the fabrication methods,advanced mechanisms and strain sensing abilities of CPC strain sensors reported in recent years,especially the sensors with superior performance.Finally,the structural design,bionic function,integration technology and further application of CPC strain sensors are prospected.Liwei Lin Sumin Park Yuri Kim Minjun Bae Jeongyeon Lee Wang Zhang Jiefeng Gao Sun Ha Paek Yuanzhe Piao 2023Nano Materials Science2023,5,4:0
23D打印铝基含能材料的研究进展显示文摘论述了3D打印技术在铝基含能材料性能调控方面的应用;分别讨论了3D打印墨水优化和利用3D打印技术优化成型材料的微结构两个方面对含能材料燃速、力学特性等方面的影响。研究发现,在墨水中添加含氟聚合物或可解链聚合物会显著影响铝粉燃烧的初始反应路径,调节其点火和燃烧特性;作为黏合剂在含能材料应用中能够快速释放大量气体产物,抑制铝粉的团聚,是未来黏合剂选择的一种新路径。3D打印含能材料的微结构优化主要利用改变含能材料空间结构、分布梯度和组分的特定结构等方法,提高材料的燃烧效率。从目前已有成果和发展趋势来看,墨水优化与微结构优化相结合将是含能材料制备工艺的未来发展方向。附参考文献94篇。韩嘉禾 文明杰 陈东平 初庆钊 2023火炸药学报2023,46,11:0
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