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991.
Zepeng Zhou Wenqing Li Jun Qian Weihong Liu Yiming Wang Xijian Zhang Qinglei Guo Yevhen Yashchyshyn Qingpu Wang Yanpeng Shi Yifei Zhang 《Molecules (Basel, Switzerland)》2022,27(4)
With the emergence of fifth-generation (5G) cellular networks, millimeter-wave (mmW) and terahertz (THz) frequencies have attracted ever-growing interest for advanced wireless applications. The traditional printed circuit board materials have become uncompetitive at such high frequencies due to their high dielectric loss and large water absorption rates. As a promising high-frequency alternative, liquid crystal polymers (LCPs) have been widely investigated for use in circuit devices, chip integration, and module packaging over the last decade due to their low loss tangent up to 1.8 THz and good hermeticity. The previous review articles have summarized the chemical properties of LCP films, flexible LCP antennas, and LCP-based antenna-in-package and system-in-package technologies for 5G applications, although these articles did not discuss synthetic LCP technologies. In addition to wireless applications, the attractive mechanical, chemical, and thermal properties of LCP films enable interesting applications in micro-electro-mechanical systems (MEMS), biomedical electronics, and microfluidics, which have not been summarized to date. Here, a comprehensive review of flexible LCP technologies covering electric circuits, antennas, integration and packaging technologies, front-end modules, MEMS, biomedical devices, and microfluidics from microwave to THz frequencies is presented for the first time, which gives a broad introduction for those outside or just entering the field and provides perspective and breadth for those who are well established in the field. 相似文献
992.
依据SMM-601型超导量子干涉显微镜检测部分构建计算模型,采用电磁场有限元方法分析了残余应力引起的非磁性金属材料铍电导率变化对超导量子干涉仪(SQUID)检测信号的影响,并讨论了该方法实际应用于非磁性金属材料残余应力检测的条件和可能性。 相似文献
993.
994.
Effect of Interfacial Adsorption on the Stability of Thin Polymer Films in a Solvent-induced Process
The stability of ultrathin polymer films plays a crucial role in their technological applications. Here, we systematically investigated the influence of interfacial adsorption in physical aging and the stability of thin polymer films in the solvent-induced process. We further identify the stability mechanism from the theory of thin film stability. Our results show that the aging temperature and film thickness can strongly influence the stability of thin PS films in acetone vapor. Physical aging can greatly improve the stability of thin polymer films when the aging temperature T_(aging1)T_g. A thinner PS film more quickly reaches a stable state via physical aging. At short aging time, the formation of the adsorbed layer can reduce the polar interaction; however, it slightly influences the stability of thin polymer films in the solvent-induced process. At later aging stage,the conformational rearrangement of the polymer chains induced by the interfacial effect at the aging temperature T_(aging1) plays an important role in stabilizing the thin polymer films. However, at T_(aging2)T_g, the process of physical aging slightly influences the stability of the thin polymer films.The formation of the adsorbed layer at T_(aging2) can reduce the short-range polar interaction of the thin film system and cannot suppress the instability of thin polymer films in the solvent-induced process. These results provide further insight into the stable mechanism of thin polymer films in the solvent-induced process. 相似文献
995.
A citric acid ligand assisted self-assembly method is used for the synthesis of ternary mesoporous cerium lanthanum solid solution doped with metal elements (Co, Zr, Mg). Their textural property was characterized by X-ray diffraction, transmission electron microscopy, N2 adsorption-desorption, X-ray photoelectron spectroscopy and TPD techniques, and so on. The results of catalytic testing for synthesis of dimethyl carbonate (DMC) from CH3OH and CO2 indicated that the DMC yield reached 316 mmol/g on Ce-La-Co solid solution when the reaction temperature was 413 K and the reaction pressure was 8.0 MPa. It was found that Co had synergistic effect with La and Ce, doping of Co on the mesoporous Ce-La solid solution was helpful to increase the surface area of the catalyst, promote CO2 adsorption and activation, and improve the redox performance of solid solution catalyst. The conversion of Co2+ to Co3+ resulted in the continuous redox cycle between Ce4+ and Ce3+, and the oxygen vacancy content of the catalyst was increased. Studies have shown that the catalytic performance of Ce-La-Co solid solution is positively correlated with oxygen vacancy content. On this basis, the reaction mechanism of DMC synthesis from CO2 and CH3OH on the catalyst was speculated. 相似文献
996.
大学生体育锻炼与心理健康关系的研究 总被引:13,自引:0,他引:13
通过问卷调查了解到,大学生体育锻炼习惯、兴趣与心理健康水平呈显著性关系,体育锻炼的形式对心理健康水平有着重要的影响,体育锻炼类型也对大学生心理健康水平有一定的影响,体育锻炼与心理健康存在着明显的互动关系. 相似文献
997.
β型成核剂在聚丙烯中的应用Ⅱ.NA-BW作用下聚丙烯的非等温结晶动力学 总被引:1,自引:0,他引:1
添加酰胺类β型成核剂制备了高水平β晶型聚丙烯(β-iPP),用差示量热扫描仪(DSC)手段研究了其非等温结晶行为,对所得数据用修正A vram i方程的Jeziorny法和莫志深法进行处理。结果表明:β型成核剂NA-BW的加入可提高聚丙烯的结晶度以及峰值结晶温度,当降温速率为10°C/m in时,纯聚丙烯和β晶型聚丙烯的结晶温度分别为110和116°C,同时也明显地提高聚丙烯的结晶速度,在5°C/m in降温速率下,纯聚丙烯和β晶型聚丙烯的t1/2分别是2.19和1.78 m in。 相似文献
998.
β型成核剂在聚丙烯中的应用Ⅰ.NA-BW引导聚丙烯结晶行为及力学性能 总被引:1,自引:1,他引:0
通过酰胺化合物(NA-BW)引导等规聚丙烯(iPP)制备高水平β晶型聚丙烯(β-iPP),借助广角X射线衍射(WAXD),差示扫描量热仪(DSC)及偏光显微镜(POM)研究其结晶形态及结晶行为,并研究了β型成核剂对iPP力学性能的影响。结果表明:加入β型成核剂NA-BW后,iPP的晶型和球晶形态均发生变化;等温结晶研究表明聚丙烯的半结晶时间(t1/2)明显降低,即结晶速度加快,非等温结晶研究表明iPP的结晶温度提高;iPP的冲击强度大大提高,拉伸和弯曲性能却略有下降。当成核剂用量为3 m g/g时,悬臂梁缺口冲击强度达到最大值,提高达3.5倍,由49.35J/m提高到176.23 J/m。热稳定性实验表明β型成核剂对聚丙烯成核效果的热稳定性良好。 相似文献
999.
1000.
双向分束角对称的偏光分束镜设计与性能分析 总被引:4,自引:4,他引:0
为了获得分束角对称的偏光分束棱镜,在双Wollaston棱镜结构的基础上,通过合理设计棱镜左右两端晶体光轴的取向,使棱镜整体呈中心切面对称;在保证对正向入射的光对称分束的同时,对反向入射光同样可以对称分束,达到了双向对称分束的目的;在此基础上给出了晶体光轴的旋转角δ与棱镜结构角S以及与波长的关系;并分析了对633 nm设计的棱镜用于其他波长时分束角的对称性.结果表明:在±300 nm的光谱范围内,分束角的不对称度均小于0.24°. 相似文献