私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

當前位置:群英聚首 >> 最新動態 >> 正文
ACS Nano雜志發表本課題組關于石墨烯-PDA驅動器的論文
來源:黃毅教授個人網站 發布日期:2012-04-29

http://pubs.acs.org/doi/abs/10.1021/nn3006812

Electromechanical Actuator with Controllable Motion, Fast Response-Rate and High-Frequency Resonance Based on Graphene and Polydiacetylene

Jiajie Liang, Lu Huang, Na Li, Yi Huang*, Yingpeng Wu, Shaoli Fang, Jiyoung Oh, Mikhail Kozlov, Yanfeng Ma, Feifei Li, Ray Baughman, Yongsheng Chen*

Key Laboratory of Functional Polymer Materials and Centre of Nanoscale Science and Technology Institute of Polymer Chemistry College of Chemistry Nankai University 300071, Tianjin (China)

Although widely investigated, novel electromechanical actuators with high overall actuation performance are still in urgent need for various practical and scientific applications, such as robots, prosthetic devices, sensor switches, and sonar projectors. In this work, combining the properties of unique environmental perturbations-actuated deformational isomerization of polydiacetylene (PDA) and the outstanding intrinsic features of graphene together for the first time, we design and fabricate an electromechanical bimorph actuator composed of a layer of PDA crystal and a layer of flexible graphene paper through a simple yet versatile solution approach. Under low applied direct current (dc), the graphene–PDA bimorph actuator with strong mechanical strength can generate large actuation motion (curvature is about 0.37 cm–1 under a current density of 0.74 A/mm2) and produce high actuation stress (more than 160 MPa/g under an applied dc of only 0.29 A/mm2). When applying alternating current (ac), this actuator can display reversible swing behavior with long cycle life under high frequencies even up to 200 Hz; significantly, while the frequency and the value of applied ac and the state of the actuators reach an appropriate value, the graphene–PDA actuator can produce a strong resonance and the swing amplitude will jump to a peak value. Moreover, this stable graphene–PDA actuator also demonstrates rapidly and partially reversible electrochromatic phenomenon when applying an ac. Two mechanisms—the dominant one, electric-induced deformation, and a secondary one, thermal-induced expansion of PDA—are proposed to contribute to these interesting actuation performances of the graphene–PDA actuators. On the basis of these results, a mini-robot with controllable direction of motion based on the graphene–PDA actuator is designed to illustrate the great potential of our discoveries for practical use. Combining the unique actuation mechanism and many outstanding properties of graphene and PDA, this novel kind of graphene–PDA actuator exhibits compelling advantages to traditional electromechanical actuation technology and may provide a new avenue for actuation applications.

Copyright © 2005 Polymer.cn All rights reserved
中國聚合物網 版權所有
經營性網站備案信息

京公網安備11010502032929號

工商備案公示信息

京ICP證050801號

京ICP備12003651號

主站蜘蛛池模板: 黑龙江省| 龙川县| 柳林县| 翼城县| 银川市| 龙南县| 湖北省| 师宗县| 舒兰市| 崇仁县| 台前县| 宁乡县| 巴林右旗| 南皮县| 达拉特旗| 定结县| 瓮安县| 宿松县| 兴和县| 柘荣县| 怀来县| 岳普湖县| 日喀则市| 烟台市| 东乡| 固镇县| 连州市| 两当县| 晋城| 奈曼旗| 玉山县| 乐山市| 乌拉特前旗| 来安县| 虞城县| 闽清县| 英德市| 台山市| 泽州县| 奉新县| 绥阳县|