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    • 2. 发明申请
    • Negative Electrode Material For Nonaqueous Secondary Cells, Negative Electrode For Nonaqueous Secondary Cells, and Nonaqueous Secondary Cell
    • 用于非水二次电池的负电极材料,非水二次电池负电极和非水二次电池
    • US20080199777A1
    • 2008-08-21
    • US11661213
    • 2005-08-30
    • Nobuyuki OnishiHideharu SatohKeita Yamaguchi
    • Nobuyuki OnishiHideharu SatohKeita Yamaguchi
    • H01M4/38C01B31/00
    • H01M4/0435H01M4/0404H01M4/0409H01M4/1393H01M4/587H01M10/0525H01M2004/021
    • A negative electrode material for a nonaqueous secondary battery capable of realizing a nonaqueous secondary battery having a small charging/discharging irreversible capacity at an initial cycle and exhibiting an excellent high-rate charging/discharging characteristics and an excellent cycle performances is provided. The main component of the material is graphite particles. The median diameter is 5 μm or more, and 40 μm or less in the volume-basis particle size distribution based on the laser diffraction/scattering particle size distribution measurement. The tapping density is 0.7 g/cm3 or more. The specific surface area measured by a BET method is 0.2 m2/g or more, and 8 m2/g or less. The average circularity is 0.83 or more, and 1.00 or less. When an electrode is produced by a predetermined method for manufacturing an electrode and, the resulting electrode is subjected to X-ray diffraction, the graphite crystal orientation ratio I110/I004 on the electrode is 0.08 or more, where I110 represents the wide angle X-ray diffraction peak area of the (110) peak peak in the region of 2θ=76.5 to 78.5 degrees of the graphite particles on the electrode and I004 represents the wide angle X-ray diffraction peak area of the (004) peak peak in the region of 2θ=53.5 to 56 degrees.
    • 提供一种能够实现初始循环时具有小充电/放电不可逆容量的非水二次电池的非水二次电池用负极材料,具有优异的高速充放电特性和优异的循环性能。 材料的主要成分是石墨颗粒。 基于激光衍射/散射粒度分布测量,体积基础粒径分布的中值粒径为5μm以上,40μm以下。 敲击密度为0.7g / cm 3以上。 通过BET法测得的比表面积为0.2m 2 / g以上,8m 2 / g以下。 平均圆形度为0.83以上,1.00以下。 当通过用于制造电极的预定方法制造电极,并且对所得的电极进行X射线衍射时,石墨晶体取向比I 110 / I 004 < 在电极上为0.08以上,其中I 110表示(110)峰值在2θ= 76.5〜78.5度的石墨颗粒上的广角X射线衍射峰面积 电极和I 004表示在2θ= 53.5至56度的区域中的(004)峰峰的广角X射线衍射峰面积。
    • 4. 发明申请
    • Apparatus for transferring a microplate
    • 用于转移微板的装置
    • US20050180883A1
    • 2005-08-18
    • US10780081
    • 2004-02-17
    • Yoshio MaedaHideharu Satoh
    • Yoshio MaedaHideharu Satoh
    • G01N35/00G01N35/04
    • G01N35/04G01N2035/0422
    • The present invention provides an apparatus for transferring a microplate having a plurality of wells arranged in a matrix of lengthwise and crosswise rows relative to stationary dispenser nozzles spaced at regular intervals in the crosswise direction for dispensing a liquid matter into the wells. The number of the nozzles being smaller than the number of the wells in each crosswise row of the microplate. In a preferred embodiment of the invention, the number of the nozzles corresponds to half the number of the wells in a crosswise row. The apparatus comprises, a support plate on which the microplate is mounted, a means for transferring the support plate forward and backward in the lengthwise direction, and a means for shifting the support plate in the crosswise direction between a first position in which each of the odd or even wells in crosswise rows of the microplate is aligned with correspondingly one of the nozzles in the lengthwise direction, respectively, and a second position in which each of the even or odd wells in crosswise rows of the microplate is aligned with correspondingly one of the nozzles in the lengthwise direction, respectively.
    • 本发明提供了一种用于转移微孔板的装置,该微孔板具有相对于在横向方向上以规则间隔隔开的沿着纵向和横向排布置的矩阵中的多个孔,用于将液体物质分配到孔中。 喷嘴的数量小于微板每个横列中的孔的数量。 在本发明的优选实施例中,喷嘴的数量对应于横向排中的孔的数量的一半。 该装置包括:安装有微板的支撑板,用于沿长度方向前后移动支撑板的装置,以及用于在第一位置之间沿横向移动支撑板的装置,在第一位置, 微孔板的横列中的奇数或偶数孔分别与长度方向上相应的一个喷嘴对准,并且第二位置,其中微孔板的横列中的偶数或奇数孔中的每一个与对应的一个 喷嘴分别在长度方向。
    • 5. 发明申请
    • NEGATIVE ELECTRODE MATERIAL FOR NONAQUEOUS SECONDARY CELLS, NEGATIVE ELECTRODE FOR NONAQUEOUS SECONDARY CELLS, AND NONAQUEOUS SECONDARY CELL
    • 用于非水性次级细胞的负电极材料,非水性次级细胞的负电极和非等级次级细胞
    • US20090214954A1
    • 2009-08-27
    • US11574423
    • 2005-08-30
    • Nobuyuki OnishiHideharu SatohKeita Yamaguchi
    • Nobuyuki OnishiHideharu SatohKeita Yamaguchi
    • H01M4/58
    • H01M4/0435H01M4/0404H01M4/0409H01M4/1393H01M4/587H01M10/0525H01M2004/021
    • A negative electrode material for a nonaqueous secondary battery capable of realizing a nonaqueous secondary battery having a small charging/discharging irreversible capacity at an initial cycle, exhibiting an excellent high-rate charging/discharging characteristics and an excellent cycle performances, and having no electrodeposition problem is provided. The main component of the material is graphite particles. The median diameter of the graphite particles is 5 μm or more, and 40 μm or less in the volume-basis particle size distribution based on the laser diffraction/scattering particle size distribution measurement. The tapping density of the negative electrode material is 0.7 g/cm3 or more. The specific surface area measured by a BET method is 0.2 m2/g or more, and 8 m2/g or less. When an electrode is produced from the negative electrode material by a predetermined method for manufacturing an electrode, and the surface of the resulting electrode is measured with a laser shape measurement microscope, the skewness (Rsk) prescribed by JIS B 0601 of the surface roughness curve is −1.7 or more, and 0 or less.
    • 一种非水二次电池用负极材料,其能够实现初始循环时具有小充电/放电不可逆容量的非水二次电池,具有优异的高速充电/放电特性和优异的循环性能,并且不具有电沉积问题 被提供。 材料的主要成分是石墨颗粒。 基于激光衍射/散射粒度分布测量,石墨颗粒的中值粒径为5μm以上,体积基础粒径分布为40μm以下。 负极材料的攻丝密度为0.7g / cm 3以上。 通过BET法测定的比表面积为0.2m 2 / g以上,8m 2 / g以下。 当通过预定的电极制造方法从负极材料制造电极,并用激光形状测量显微镜测量所得电极的表面时,表面粗糙度曲线由JIS B 0601规定的偏度(Rsk) 为-1.7以上,0以下。
    • 6. 发明授权
    • Negative electrode material for nonaqueous secondary cells, negative electrode for nonaqueous secondary cells, and nonaqueous secondary cell
    • 非水系二次电池用负极材料,非水系二次电池用负极和非水系二次电池
    • US08404383B2
    • 2013-03-26
    • US11661213
    • 2005-08-30
    • Nobuyuki OnishiHideharu SatohKeita Yamaguchi
    • Nobuyuki OnishiHideharu SatohKeita Yamaguchi
    • H01M4/13C01B31/04
    • H01M4/0435H01M4/0404H01M4/0409H01M4/1393H01M4/587H01M10/0525H01M2004/021
    • A negative electrode material for a nonaqueous secondary battery capable of realizing a nonaqueous secondary battery having a small charging/discharging irreversible capacity at an initial cycle and exhibiting an excellent high-rate charging/discharging characteristics and an excellent cycle performances is provided. The main component of the material is graphite particles. The median diameter is 5 μm or more, and 40 μm or less in the volume-basis particle size distribution based on the laser diffraction/scattering particle size distribution measurement. The tapping density is 0.7 g/cm3 or more. The specific surface area measured by a BET method is 0.2 m2/g or more, and 8 m2/g or less. The average circularity is 0.83 or more, and 1.00 or less. When an electrode is produced by a predetermined method for manufacturing an electrode and, the resulting electrode is subjected to X-ray diffraction, the graphite crystal orientation ratio I110/I004 on the electrode is 0.08 or more, where I110 represents the wide angle X-ray diffraction peak area of the (110) peak peak in the region of 2θ=76.5 to 78.5 degrees of the graphite particles on the electrode and I004 represents the wide angle X-ray diffraction peak area of the (004) peak peak in the region of 2θ=53.5 to 56 degrees.
    • 提供一种能够实现初始循环时具有小充电/放电不可逆容量的非水二次电池的非水二次电池用负极材料,具有优异的高速充放电特性和优异的循环性能。 材料的主要成分是石墨颗粒。 基于激光衍射/散射粒度分布测定,体积基准粒径分布的中值粒径为5μm以上,40μm以下。 攻丝密度为0.7g / cm3以上。 通过BET法测定的比表面积为0.2m 2 / g以上,8m 2 / g以下。 平均圆形度为0.83以上,1.00以下。 当通过用于制造电极的预定方法制造电极,并且对所得电极进行X射线衍射时,电极上的石墨晶体取向比I110 / I004为0.08以上,其中,I110表示广角X射线, (110)峰峰的射线衍射峰面积在电极上的石墨颗粒的2θ= 76.5〜78.5度,I004表示(004)峰值的广角X射线衍射峰面积 2&thetas区域= 53.5〜56度。