ID 原文 译文
15615 在复合电极材料中,处于基底和顶层材料之间的中间层材料应具有良好的结构,用于支撑复合电极整体的稳定性,而顶层材料应具有足够高的理论容量提供整体材料的电化学性能。 In composite electrode materials, the intermediate layer material between the base and the top layer material should have a good structure to support the overall stability of the composite electrode, and the top layer material should have a sufficiently high theoretical capacity to support the electrochemical performance of the overall material.
15616 将具有以上性质的材料进行复合制备具有分层结构的电极,将大大提高整体材料的电化学性能。 Combining materials with the above properties will greatly improve the electrochemical performance of the device.
15617 本文根据材料的不同,分类介绍了目前在实际研究中应用较为广泛、电气性能较为理想的中间层材料和顶层材料,可为超级电容器电极材料性能的进一步提升提供理论依据。 This paper introduces the intermediate layer materials and top layer materials that are widely used in the research and have relatively ideal electrical properties, which can provide the theoretical basis for the further improvement of the performance of supercapacitor electrode materials.
15618 采用化学刻蚀铝箔、交流电刻蚀铝箔、微孔贯穿铝箔和涂炭铝箔分别作为超级电容器的集流体。 Four types of aluminum foils, including chemical etched foil, AC-etched foil, microporous perforated foil and carbon- coated foil, were used as the current collectors of supercapacitors.
15619 通过扫描电镜、纸张拉力仪对铝箔的表面结构、力学性能进行了测试,并研究对比了铝箔对超级电容器及电极片的截面形貌、剥离强度、电极方阻、倍率性能和循环寿命的影响。 The surface structure and mechanical properties of the aluminum foils were tested by SEM and paper tension meter, and the influences of the aluminum foils on the cross-section topography, peel strength, square resistance, rate performance and cycle life of supercapacitors and electrodes were also investigated.
15620 结果表明,以交流电刻蚀铝箔为集流体的超级电容器在电极剥离强度、方阻等方面相比化学刻蚀铝箔更具优势,这得益于其更发达的腐蚀坑洞; The results show that compared with chemical etched foil, the supercapacitors with AC-etched foil as a current collector have more advantages ir electrode peel strength and square resistance, which is due to its more developed corrosion potholes.
15621 以涂炭铝箔为集流体的超级电容器具有最小的直流内阻,倍率性能最佳,在50C倍率下的容量保持率为97.3%,经100万次循环后容量保持率达到86.23%。 The sudpercapacitors with carbon -coated foil as a current collector have the smallest internal resistance and the best rate performance of 97.3% capacity retention at50C,and excellent cycle life of 86.23% capacity retention after 1 million cycles.
15622 随着人工智能技术的迅速发展,柔性三维力传感器在智能机器人、医疗、可穿戴电子设备等领域具有重要的应用价值。 With rapid development of artificial intelligence technology, flexible three- dimensional force sensors have shown important application value in intelligent robots, medical treatment, wearable electronic devices and other fields.
15623 近十年来,大量的科研人员对柔性三维力传感器展开了研究,并取得了巨大的进展。 In the past decade, many researchers have investigated flexible three- dimensional force sensors and achieved great progress.
15624 本文首先从柔性三维力传感器的基本原理展开论述,接着综述了近年来柔性三维力传感器在结构、材料、解耦方法、三维力加载试验平台及应用等方面的研究进展。 Firstly, this article surveys the working principles of flexible three-dimensional force sensors, and then summarizes the research progress of flexible three -dimensional force sensors in recent years in term of structures, materials, decoupling methods, three-dimensional force loading test platforms and applications.