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公开(公告)号:US10753941B2
公开(公告)日:2020-08-25
申请号:US14342074
申请日:2012-09-03
Applicant: Benzhong Tang , Wei Qin , Jianzhao Liu , Sijie Chen , Tsz Kin Kwok , Bin Liu , Kai Li , Dan Ding , Haibin Shi , Jun Long Geng , Jingzhi Sun , Anjun Qin , Qiuli Zhao
Inventor: Benzhong Tang , Wei Qin , Jianzhao Liu , Sijie Chen , Tsz Kin Kwok , Bin Liu , Kai Li , Dan Ding , Haibin Shi , Jun Long Geng , Jingzhi Sun , Anjun Qin , Qiuli Zhao
Abstract: The development of fluorescent bioprobes comprising organic fluorescent compounds that exhibit aggregation induced emission (AIE) properties, methods of producing the same, and their practical applications for in vitro and in vivo bioimaging.
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公开(公告)号:US20190024246A1
公开(公告)日:2019-01-24
申请号:US14692886
申请日:2015-04-22
Applicant: Peidong Yang , Chong Liu , Jinyao Tang , Hao Ming Chen , Bin Liu
Inventor: Peidong Yang , Chong Liu , Jinyao Tang , Hao Ming Chen , Bin Liu
Abstract: This disclosure provides systems, methods, and apparatus related to solar water splitting. In one aspect, a structure includes a plurality of first nanowires, the plurality of first nanowires comprising an n-type semiconductor or a p-type semiconductor. The structure further includes a second nanowire, the second nanowire comprising the n-type semiconductor or the p-type semiconductor, the second nanowire being a different composition than the plurality of first nanowires. The second nanowire includes a first region and a second region, with the first region having a conductive layer disposed thereon, and each of the plurality of first nanowires being disposed on the conductive layer.
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公开(公告)号:US09951346B2
公开(公告)日:2018-04-24
申请号:US14236597
申请日:2012-07-18
Applicant: Andrew Mark Cigan , Saverio Carl Falco , Huirong Gao , Michael W. Lassner , Zhongsen Li , Zhan-Bin Liu , Leszek A. Lyznik , David J. Peterson , Christopher Jay Scelonge
Inventor: Andrew Mark Cigan , Saverio Carl Falco , Huirong Gao , Michael W. Lassner , Zhongsen Li , Zhan-Bin Liu , Leszek A. Lyznik , David J. Peterson , Christopher Jay Scelonge
IPC: C12N15/82
CPC classification number: C12N15/8213
Abstract: Compositions and methods are provided for the targeted integration of a polynucleotide sequence of interest into the genome of a plant or plant cell. The methods and compositions employ recognition sites for endonucleases and endonucleases in combination with site-specific recombination sites/recombinases to provide an effective system for establishing target sites within the genome of a plant, plant cell or seed. Once such target sites are established, a variety of methods can be employed to further modify the target sites such that they contain a variety of polynucleotides of interest.
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公开(公告)号:US09636021B2
公开(公告)日:2017-05-02
申请号:US14740914
申请日:2015-06-16
IPC: A61B5/00 , A61B5/02 , C07D311/30 , G01N33/50 , G01N33/58
CPC classification number: A61B5/0071 , A61B5/02007 , A61B2503/02 , A61B2503/40 , A61K49/0021 , C07D311/30 , G01N33/5088 , G01N33/582 , G01N2333/4603
Abstract: Flavonoid compounds that are selective for a protein, a portion or a living cell, or a portion of an organism may be used as biological imaging agents. The flavonoid compounds are useful for methods of imaging organisms such as zebrafish embryos and zebra fish. Flavonoid compounds may also be used to detect protein. Advantageously, flavonoids that selectively bind protein, a portion of a living cell, or a portion of an organism may exhibit a florescence “turn-on” mechanism, where the flavonoids that are selectively bound exhibit a florescence response when excited.
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公开(公告)号:US09574569B2
公开(公告)日:2017-02-21
申请号:US13479976
申请日:2012-05-24
Applicant: Shun-Chen Chang , Wen-Bin Liu , Kun-Fu Chuang
Inventor: Shun-Chen Chang , Wen-Bin Liu , Kun-Fu Chuang
CPC classification number: F04D25/082 , F04D19/002 , F04D19/007 , F04D19/026 , F04D25/022 , F04D25/024 , F04D25/026 , F04D25/12 , F04D25/166 , F04D29/329 , F04D29/541 , F04D29/542
Abstract: A recirculation fan includes a casing, a covering member, a wind-guiding device, a passive impeller, and an active impeller. The covering member is coupled with the casing to define an accommodation space. The wind-guiding device is disposed on the covering member, and includes a wind-guiding cover and a magnetoresistive structure. The magnetoresistive structure is disposed on the covering member and the wind-guiding cover. The passive impeller is disposed within the accommodation space. The active impeller is disposed within the accommodation space and located beside the passive impeller for generating a wind to drive rotation of the passive impeller and the wind-guiding cover. In response to a magnetic torque resulted from a magnetic vortex of the magnetoresistive structure, a rotating speed of the wind-guiding cover is slowed down.
Abstract translation: 再循环风扇包括壳体,覆盖构件,导风装置,无源叶轮和主动叶轮。 覆盖构件与壳体联接以限定容纳空间。 导风装置设置在覆盖构件上,并且包括导风罩和磁阻结构。 磁阻结构设置在覆盖构件和导风罩上。 被动叶轮设置在容纳空间内。 活动叶轮设置在容纳空间内并位于被动叶轮旁边,用于产生风力以驱动被动叶轮和导风盖的旋转。 响应由磁阻结构的磁涡旋产生的磁力矩,风导向罩的转速减慢。
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公开(公告)号:US09490498B2
公开(公告)日:2016-11-08
申请号:US14361703
申请日:2011-11-30
Applicant: Bin Liu
Inventor: Bin Liu
CPC classification number: H01M10/0427 , H01M2/0222 , H01M2/0287 , H01M2/0413 , H01M2/12 , H01M2/14
Abstract: A mercury-free lead-free button battery includes a negative cap, a cathode material, a gasket ring, a positive can, an anode material, and a diaphragm. The positive can and the negative cap are combined. The gasket ring is clamped between the positive can and the negative cap for separating the positive can from the negative cap. The cathode material is arranged on the bottom of the positive can. The diaphragm is arranged on the cathode material. The anode material is arranged between the negative cap and the diaphragm. A partition unit is arranged between the negative cap and the anode material for separating the anode material from the negative cap and conductively connecting the anode material and the negative cap. The partition unit ensures disconnection between the anode material and the negative cap and therefore safety of the battery by preventing expansion, weeping and even that would otherwise happen.
Abstract translation: 无汞无铅纽扣电池包括负极帽,阴极材料,垫圈,正极罐,阳极材料和隔膜。 积极的可以和负的帽子结合在一起。 垫圈环夹在正盖和负盖之间,用于将正盖与负盖分离。 正极材料布置在正极罐的底部。 隔膜布置在阴极材料上。 负极材料布置在负极盖和隔膜之间。 分隔单元布置在负盖和阳极材料之间,用于将阳极材料与负极帽分离,并导电连接阳极材料和负极盖。 分隔单元确保阳极材料和负极帽之间的断开,因此通过防止膨胀而发生电池的安全,否则会发生哭泣。
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