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Lightweight Dual‑Functional Segregated Nanocomposite Foams for Integrated Infrared Stealth and Absorption‑Dominant Electromagnetic Interference Shielding 被引量:2
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作者 Zhonglei Ma Ruochu Jiang +8 位作者 Jiayao Jing Songlei Kang Li Ma Kefan Zhang Junxian Li Yu Zhang jianbin qin Shuhuan Yun Guangcheng Zhang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第11期38-55,共18页
Lightweight infrared stealth and absorption-dominant electromagnetic interference(EMI)shielding materials are highly desirable in areas of aerospace,weapons,military and wearable electronics.Herein,lightweight and hig... Lightweight infrared stealth and absorption-dominant electromagnetic interference(EMI)shielding materials are highly desirable in areas of aerospace,weapons,military and wearable electronics.Herein,lightweight and high-efficiency dual-functional segregated nanocomposite foams with microcellular structures are developed for integrated infrared stealth and absorption-dominant EMI shielding via the efficient and scalable supercritical CO_(2)(SC-CO_(2))foaming combined with hydrogen bonding assembly and compression molding strategy.The obtained lightweight segregated nanocomposite foams exhibit superior infrared stealth performances benefitting from the synergistic effect of highly effective thermal insulation and low infrared emissivity,and outstanding absorption-dominant EMI shielding performances attributed to the synchronous construction of microcellular structures and segregated structures.Particularly,the segregated nanocomposite foams present a large radiation temperature reduction of 70.2℃ at the object temperature of 100℃,and a significantly improved EM wave absorptivity/reflectivity(A/R)ratio of 2.15 at an ultralow Ti_(3)C_(2)T_(x) content of 1.7 vol%.Moreover,the segregated nanocomposite foams exhibit outstanding working reliability and stability upon dynamic compression cycles.The results demonstrate that the lightweight and high-efficiency dual-functional segregated nanocomposite foams have excellent potentials for infrared stealth and absorption-dominant EMI shielding applications in aerospace,weapons,military and wearable electronics. 展开更多
关键词 Segregated nanocomposite foams Microcellular structures Infrared stealth EMI shielding Low infrared emissivity
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实践类课程开展课程思政教学改革的思考与实践——以高分子材料制备与成型创新实验为例 被引量:5
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作者 秦建彬 史学涛 +3 位作者 张广成 狄西岩 顾军渭 闫毅 《大学化学》 CAS 2022年第3期132-136,共5页
开展课程思政教学改革是高校实现三全育人的有效途径,是高校实现立德树人根本任务的重要举措。高分子材料制备与成型创新实验是高分子材料与工程专业的必修专业综合实践类课程,该课程具有思政元素丰富、现场实践教学感染力强等优势。本... 开展课程思政教学改革是高校实现三全育人的有效途径,是高校实现立德树人根本任务的重要举措。高分子材料制备与成型创新实验是高分子材料与工程专业的必修专业综合实践类课程,该课程具有思政元素丰富、现场实践教学感染力强等优势。本文以高分子材料制备与成型创新实验为例,从实践类课程开展课程思政教学改革的意义、探索、实践和长效机制等方面进行了系统论述,总结了在实践类课程中开展课程思政教育的具体方法、优势和意义。 展开更多
关键词 课程思政 实践类课程 高分子材料科学与工程 教学改革
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