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公开(公告)号:US20140200042A1
公开(公告)日:2014-07-17
申请号:US13635217
申请日:2012-09-03
申请人: Hsi-Feng Chen , Chun-Ying Wu , Xinwei Cui , Zhaokun Dong , Yang Yang , Ming-Chun Cheng
发明人: Hsi-Feng Chen , Chun-Ying Wu , Xinwei Cui , Zhaokun Dong , Yang Yang , Ming-Chun Cheng
IPC分类号: H04W76/02
CPC分类号: H04W76/025 , H04W56/0015 , H04W76/15 , H04W88/06
摘要: A timing method and communication apparatus therefor. The timing method, performed by a mobile communication device, includes: activating a first communication module; receiving updated information when the first communication module is active; determining and setting an expiry time for an adaptive timer based on the updated information; activating the adaptive timer to count to the determined expiry time; and activating a second communication module when the adaptive timer expires.
摘要翻译: 一种定时方法及其通信装置。 由移动通信设备执行的定时方法包括:激活第一通信模块; 当第一通信模块处于活动状态时接收更新的信息; 基于更新的信息来确定和设置自适应定时器的到期时间; 激活自适应定时器以计算确定的到期时间; 以及当所述自适应定时器期满时激活第二通信模块。
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公开(公告)号:US09258838B2
公开(公告)日:2016-02-09
申请号:US13635217
申请日:2012-09-03
申请人: Hsi-Feng Chen , Chun-Ying Wu , Xinwei Cui , Zhaokun Dong , Yang Yang , Ming-Chun Cheng
发明人: Hsi-Feng Chen , Chun-Ying Wu , Xinwei Cui , Zhaokun Dong , Yang Yang , Ming-Chun Cheng
CPC分类号: H04W76/025 , H04W56/0015 , H04W76/15 , H04W88/06
摘要: A timing method and communication apparatus therefor. The timing method, performed by a mobile communication device, includes: activating a first communication module; receiving updated information when the first communication module is active; determining and setting an expiry time for an adaptive timer based on the updated information; activating the adaptive timer to count to the determined expiry time; and activating a second communication module when the adaptive timer expires.
摘要翻译: 一种定时方法及其通信装置。 由移动通信设备执行的定时方法包括:激活第一通信模块; 当第一通信模块处于活动状态时接收更新的信息; 基于更新的信息来确定和设置自适应定时器的到期时间; 激活自适应定时器以计算确定的到期时间; 以及当所述自适应定时器期满时激活第二通信模块。
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公开(公告)号:US20130065050A1
公开(公告)日:2013-03-14
申请号:US13698951
申请日:2011-05-19
申请人: Weixing Chen , Xinwei Cui
发明人: Weixing Chen , Xinwei Cui
CPC分类号: C23C16/44 , B82Y30/00 , B82Y40/00 , C01B32/168 , C01G1/02 , C01G45/02 , C01P2002/85 , C01P2004/04 , C01P2004/80 , C23C16/26 , C23C18/08 , C23C18/1216 , C23C18/1245 , C23C18/1279 , C23C18/1295 , H01G11/36 , H01G11/46 , H01M4/362 , H01M4/38 , H01M4/483 , H01M4/587 , H01M8/04216 , H01M10/052 , Y02E60/13 , Y02P70/56 , Y10T428/2918
摘要: A method of dispersing a metal or metal oxide within a CNT or CNT array, comprising exposing the CNT or CNT array to a solution containing a metal compound in a non-aqueous liquid; and removing the non-aqueous liquid from the CNT or CNT array. Nanoparticles were homogenously deposited within millimeter-long carbon nanotube array (CNTA). After modified with nanoparticles, CNTA changes from hydrophobic to hydrophilic. The hydrophilic composite electrodes present ideal capacitive behavior with high reversibility. The novel, nano-architectured composite demonstrates strong promise for high-performance thick and compact electrochemical supercapacitors.
摘要翻译: 一种将金属或金属氧化物分散在CNT或CNT阵列内的方法,包括将CNT或CNT阵列暴露于含有非水液体中的金属化合物的溶液; 并从CNT或CNT阵列去除非水液体。 将纳米颗粒均匀地沉积在毫米长的碳纳米管阵列(CNTA)内。 用纳米颗粒改性后,CNTA从疏水变为亲水。 亲水性复合电极具有高可逆性的理想电容性能。 新型纳米结构复合材料表现出对高性能厚型和紧凑型电化学超级电容器的强大前景。
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公开(公告)号:US20130136860A1
公开(公告)日:2013-05-30
申请号:US13816570
申请日:2011-08-12
申请人: Weixing Chen , Xinwei Cui
发明人: Weixing Chen , Xinwei Cui
CPC分类号: C23C16/44 , B82Y30/00 , B82Y40/00 , C01B32/168 , C01G1/02 , C01G45/02 , C01P2002/85 , C01P2004/04 , C01P2004/80 , C23C16/26 , C23C18/08 , C23C18/1216 , C23C18/1245 , C23C18/1279 , C23C18/1295 , H01G11/36 , H01G11/46 , H01M4/362 , H01M4/38 , H01M4/483 , H01M4/587 , H01M8/04216 , H01M10/052 , Y02E60/13 , Y02P70/56 , Y10T428/2918
摘要: A method of fabricating carbon nanotube arrays (CNTA) on an oxide catalyst layer is disclosed. In one embodiment, the oxide catalyst is a metal oxide. The metal oxide may be deposited on a substrate used as a support. The CNTA is grown on the oxide catalyst layer under conditions promoting CNT growth. CNT growth is dependent on temperature, concentration of oxidizing molecules and carbon availability. One embodiment of the method comprises depositing an oxide catalyst layer on the substrate, heating the catalyst layer at certain rates to the target temperatures, adding oxidation molecules for the pretreatment of the oxide catalyst layer, and growing the array on the substrate. The oxide catalyst layer may comprise a group VIII element.
摘要翻译: 公开了一种在氧化物催化剂层上制造碳纳米管阵列(CNTA)的方法。 在一个实施方案中,氧化物催化剂是金属氧化物。 金属氧化物可以沉积在用作载体的基底上。 CNTA在促进CNT生长的条件下在氧化物催化剂层上生长。 CNT生长取决于温度,氧化分子的浓度和碳的可用性。 该方法的一个实施方案包括在衬底上沉积氧化物催化剂层,以一定速率将催化剂层加热到目标温度,加入用于氧化物催化剂层的预处理的氧化分子,以及在衬底上生长阵列。 氧化物催化剂层可以包含VIII族元素。
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公开(公告)号:US20120294793A1
公开(公告)日:2012-11-22
申请号:US13475729
申请日:2012-05-18
申请人: Weixing Chen , Xinwei Cui
发明人: Weixing Chen , Xinwei Cui
CPC分类号: B82Y40/00 , B82Y30/00 , C01B32/178 , C01B32/184
摘要: A method comprises: physically attaching one or more of metals, metal compounds or oxides to walls of carbon nanotubes; treating the metals, metal compounds or oxides to bond the metals, metal compounds, or oxides chemically to the carbon nanotubes; removing the metals, metal compounds or oxides from the walls of the carbon nanotubes resulting in defected carbon nanotubes; and unzipping the defected carbon nanotubes into graphene sheets or ribbons.
摘要翻译: 一种方法包括:将金属,金属化合物或氧化物中的一种或多种物理地附着到碳纳米管的壁上; 处理金属,金属化合物或氧化物以将金属,金属化合物或氧化物化学键合到碳纳米管; 从碳纳米管的壁上除去金属,金属化合物或氧化物,导致缺陷的碳纳米管; 并将缺陷的碳纳米管解压缩成石墨烯片或带。
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