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粘结桥联合超级粘结剂在牙体缺失中的应用 被引量:1
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作者 王俊丰 王东琴 邢飞鹏 《陕西医学杂志》 CAS 2014年第9期1211-1212,共2页
目的:探讨粘结桥联合超级粘结剂在牙体缺失中的应用。方法:对100例牙体缺失患者采用粘结桥联合超级粘结剂进行治疗。结果:本组100例患者满意率为97.0%。随访12~24个月,修复体松动2颗,脱落1颗,咀嚼功能良好,表现满意。结论:粘结桥联... 目的:探讨粘结桥联合超级粘结剂在牙体缺失中的应用。方法:对100例牙体缺失患者采用粘结桥联合超级粘结剂进行治疗。结果:本组100例患者满意率为97.0%。随访12~24个月,修复体松动2颗,脱落1颗,咀嚼功能良好,表现满意。结论:粘结桥联合超级粘结剂应用于单牙缺失和两颗牙缺失临床疗效满意。 展开更多
关键词 牙缺失 治疗 牙科粘固剂 治疗应用 @粘结 @超级粘结剂
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Binder-Free Activated Carbon/Carbon Nanotube Paper Electrodes for Use in Supercapacitors 被引量:6
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作者 Guanghui Xu Chao Zheng +5 位作者 Qiang Zhang Jiaqi Huang Mengqiang Zhao Jingqi Nie Xianghua Wang Fei Wei 《Nano Research》 SCIE EI CAS CSCD 2011年第9期870-881,共12页
Novel inexpensive, light, flexible, and even rollup or wearable devices are required for multi-functional portable electronics and developing new versatile and flexible electrode materials as alternatives to the mater... Novel inexpensive, light, flexible, and even rollup or wearable devices are required for multi-functional portable electronics and developing new versatile and flexible electrode materials as alternatives to the materials used in contemporary batteries and supercapacitors is a key challenge. Here, binder-free activated carbon (AC)/carbon nanotube (CNT) paper electrodes for use in advanced supercapacitors have been fabricated based on low-cost, industrial-grade aligned CNTs. By a two-step shearing strategy, aligned CNTs were dispersed into individual long CNTs, and then 90 wt%-99 wt% of AC powder was incorporated into the CNT pulp and the AC/CNT paper electrode was fabricated by deposition on a filter. The specific capacity, rate performance, and power density of the AC/CNT paper electrode were better than the corresponding values for an AC/acetylene black electrode. The capacity reached a maximum value of 267.6 F/g with a CNT loading of 5 wt%, and the energy density and power density were 22.5 W.h/kg and 7.3 kW/kg at a high current density of 20 A/g. The AC/CNT paper electrode also showed a good cycle performance, with 97.5% of the original capacity retained after 5000 cycles at a scan rate of 200 mV/s. This method affords not only a promising paper-like nanocomposite for use in low-cost and flexible supercapacitors, but also a general way of fabricating multi-functional paper-like CNT-based nanocomposites for use in devices such as flexible lithium ion batteries and solar cells. 展开更多
关键词 SUPERCAPACITOR flexible energy storage carbon nanotube activated carbon
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