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    • 1. 发明申请
    • PROCESS FOR PREPARING FLUORINE-CONTAINING ALKOXYALKANE
    • 制备含氟烷基醇的方法
    • US20080306308A1
    • 2008-12-11
    • US12133050
    • 2008-06-04
    • Tetsuo NannoMasaki Deguchi
    • Tetsuo NannoMasaki Deguchi
    • C07C43/04
    • C07C41/09C07C43/126C07C43/123C07C43/06
    • A process for preparing a fluorine-containing alkoxyalkane represented by the general formula (1) R1—O—R2—O—R3 where at least one of R1, R2 and R3 contains one or more fluorine atoms. An alcohol with the highest acidity selected from the group consisting of the compounds represented by the general formula (2) R1—OH, the general formula (3) R3—O—R2—OH, the general formula (4) R1—O—R2—OH, and the general formula (5) R3—OH is reacted with at least one selected from the group consisting of the compounds represented by the general formula (6) Lg-R2—O—R3, the general formula (7) Lg-R1, the general formula (8) Lg-R3, and the general formula (9) Lg-R2—O—R1 where Lg represents an anionic leaving group in the presence of a basic compound.
    • 制备由通式(1)表示的含氟烷氧基烷烃的方法,其中R 1,R 2和R 3中的至少一个含有一个或多个氟原子,R 1 -O-R 2 -O-R 3。 具有最高酸度的醇,其选自由通式(2)表示的化合物,R1-OH,通式(3)R3-O-R2-OH,通式(4)R1-O- R2-OH和通式(5)R3-OH与选自通式(6)Lg-R2-O-R3,通式(7)表示的化合物中的至少一种反应, Lg-R1,通式(8)Lg-R3和通式(9)Lg-R2-O-R1其中Lg表示在碱性化合物存在下的阴离子离去基团。
    • 6. 发明申请
    • TRANSMITTING DEVICE AND INFORMATION ACQUISITION CONTROL METHOD
    • 发送设备和信息获取控制方法
    • US20120237208A1
    • 2012-09-20
    • US13362300
    • 2012-01-31
    • Jumpei HONGOSyuichi MusouMasaki Deguchi
    • Jumpei HONGOSyuichi MusouMasaki Deguchi
    • H04B10/08H04B10/04
    • H04Q11/00H04L12/46H04L45/62H04L49/357H04Q2213/1301
    • an apparatus includes a first counter circuit that counts a value of first statistical information divided in the time-direction from a first period; a second counter circuit that counts a value of second statistical information divided in the time-direction from a second period following the first period; a control circuit that divides by a specific time period unit and acquires the value of the first statistical information and the value of the second statistical information, and causes a first memory to store the value of the first statistical information, and causes a second memory to store the value of the second statistical information; and a switching circuit that switches the value of the statistical information acquired by the control circuit from the value of the first statistical information to the value of the second statistical information upon a start of the second period.
    • 一种装置,包括:第一计数器电路,对从第一周期的时间方向划分的第一统计信息的值进行计数; 第二计数器电路,对从所述第一周期之后的第二周期开始在时间方向上划分的第二统计信息的值进行计数; 分配特定时间段单位并获取第一统计信息的值和第二统计信息的值的控制电路,并且使第一存储器存储第一统计信息的值,并且使第二存储器 存储第二统计信息的值; 以及开关电路,其在第二时段开始时将由控制电路获取的统计信息的值从第一统计信息的值切换到第二统计信息的值。
    • 7. 发明申请
    • NON-AQUEOUS ELECTROLYTE AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY USING THE SAME
    • 不含水的电解液和不含水的电解质二次电池
    • US20120107700A1
    • 2012-05-03
    • US13381288
    • 2011-03-15
    • Masaki Deguchi
    • Masaki Deguchi
    • H01M10/056
    • H01M10/0567H01M4/133H01M10/0525H01M10/0568
    • In view of suppressing gas production during storage at high temperatures and during charge and discharge cycles while ensuring favorable low-temperature characteristics, the invention aims to provide a non-aqueous electrolyte in which the proportion of diethyl carbonate is reduced, and a non-aqueous electrolyte secondary battery using the same that has high safety. The non-aqueous electrolyte of the invention for use in secondary batteries includes ethylene carbonate, propylene carbonate, diethyl carbonate, and an additive, as a non-aqueous solvent. The additive is at least one of a fluorinated aromatic compound having a molecular weight of 90 to 200 and a fatty acid alkyl ester having a molecular weight of 80 to 240. A weight ratio WEC of ethylene carbonate, a weight ratio WPC of propylene carbonate, a weight ratio WDEC of diethyl carbonate, and a weight ratio WLV of the additive are 5 to 30 wt %, 15 to 60 wt %, 10 to 50 wt %, and 5 to 35 wt %, respectively, to the total of the non-aqueous electrolyte.
    • 考虑到在高温保存和充放电循环期间抑制气体产生的同时确保有利的低温特性,本发明的目的是提供一种非水电解质,其中碳酸二乙酯的比例降低,非水电解质 电解质二次电池采用相同的安全性高。 用于二次电池的本发明的非水电解质包括碳酸亚乙酯,碳酸亚丙酯,碳酸二乙酯和作为非水溶剂的添加剂。 添加剂是分子量为90〜200的氟化芳香族化合物和分子量为80〜240的脂肪酸烷基酯中的至少一种。碳酸亚乙酯的重量比WEC,碳酸丙烯酯的重量比WPC, 二乙基碳酸酯的重量比WDEC和添加剂的重量比WLV分别为非总碳数的5〜30重量%,15〜60重量%,10〜50重量%和5〜35重量% 水电解液。