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1)  Li/αSn(HPO4)2 cell
Li/α-Sn(HPO_4)_2电池
2)  Li/SOCl_2 battery
Li/SOCl2电池
1.
The technology of the foamed nickel served as the positive current collector for Li/SOCl_2 battery of high rate discharge was discussed.
探讨了发泡镍作为高倍率Li/SOCl2电池正极集流体的应用工艺。
2.
The heavy load,low temperature and voltage delay performance were improved with the carbon positive electrode of the Li/SOCl_2 battery processed by m.
运用微波技术加工Li/SOCl2电池碳正极,可改善电池的大电流、低温和电压滞后等性能。
3)  Li/SOCl_2 cell
Li/SOCl2电池
1.
Safety performance,such as overdischarge,charge and short circuit of self-made Li/SOCl_2 cell and BCX cell was stu-(died.
对自制的Li/SOCl2电池和BCX电池(添加BrCl的Li/SOCl2电池)进行了过放电、充电、短路等安全性能的研究。
2.
The variation of resistance for Li electrode,carbon electrode and cell in the process of storage,before and after discharge of Li/SOCl_2 cell had been studied by AC impedance method.
用交流阻抗方法研究了Li/SOCl2电池贮存过程中和放电前后锂电极、碳电极和电池的阻抗变化。
3.
The open-circuit voltage and discharge performance of BCX and Li/SOCl_2 cells were compared and their cathode reaction characteristics were studied by CV curves.
比较了BCX电池和Li/SOCl2电池的开路电压和放电性能,并用循环伏安曲线研究了这两种电池的阴极反应特性。
4)  Li/SOCl2 battery
Li/SOCl2电池
1.
There were two main problems in the application of the Li/SOCl2 battery:voltage delay and safety performance problems,which affected the commercial application.
Li/SOCl2电池在应用中主要存在电压滞后和安全性能方面的问题,这影响了它的商业化应用。
2.
The progress of the Li/SOCl2 battery including the methods to improve the performance of the cathode,anode,electrolyte and the battery were introduced in detail.
对Li/SOCl2电池的研究进展,包括Li/SOCl2电池的锂阳极、碳阴极、电解液体系及电池性能改善等方面的研究现状及发展趋势进行了较为详细的介绍,同时介绍了该电池的应用进展。
5)  Li-H_2O battery
Li-H_2O电池
6)  Li/SOCl2 cell
Li/SOCl2电池
1.
Effects of cobalt phthalocyanine [Co(Ⅱ)Pc] and its derivatives [Co(Ⅱ)TcaPc, Co(Ⅱ)TcPc,Co(Ⅱ)TeaPc,Co(Ⅱ)OcPc and Co(Ⅱ)CcPc] on the performance of Li/SOCl2 cell were studied by the constant resistance discharge test.
通过恒电阻放电实验研究了酞菁钴[Co(Ⅱ)Pc]及其衍生物[Co(Ⅱ)TcaPc、Co(Ⅱ)TcPc、Co(Ⅱ)TeaPc、Co(Ⅱ)OcPc和Co(Ⅱ)CcPc]对Li/SOCl2电池性能的影响;分析了不同类型取代基及其数量的酞菁钴配合物对Li/SOCl2电池的催化作用、对放电电压和放电时间的影响,结果表明:Co(Ⅱ)CcPc共催化剂有较好的催化活性。
2.
The discharge performance of BCX cell(Li/SOCl2 cell adding BrCl) and Li/SOCl2 cell at high(70 ℃) and low(-20 ℃ and-40 ℃) temperatures was studied by the galvanostatic discharge test.
通过恒流放电实验研究了BCX电池(添加BrCl的Li/SOCl2电池)与Li/SOCl2电池的高温(70℃)和低温(-20℃和-40℃)放电性能。
补充资料:α,α,α,α',α',α'-六氯对二甲苯
分子式:C8H4Cl6
分子量:312.84
CAS号:68-36-0

性质:白色针状或粉末状结晶。熔点108-110℃。溶于二甲苯、石油醚、乙醇、植物油,不溶于水。无味,有特殊臭味,遇光、碱会缓慢分解而呈酸性。

制备方法:以混二甲苯为原料,先用98%硫酸磺化,使间二甲苯生成间二甲苯磺酸盐。从磺化反应物中分离出含邻、对二甲苯的油层,水洗、干燥,减压蒸馏出邻、对二甲苯。间二甲苯磺酸盐经水解可得副产品间二甲苯。由邻、对二甲苯经氯化即得1,4-双(三氯甲基)苯:在反应锅中投入邻、对二甲苯,再加入过氧化苯甲酰和三乙醇胺。加热到70℃后,在光照射下导入氯气,于70-80℃反应6h,再升温至100-120℃继续反应,至反应液相对密度达到1.560-1.580(65℃),即为反应终点,停止通氯,减压脱除余氯。降温至5℃,过滤,洗涤得粗品,重结晶,活性炭脱色得成品。

用途:抗血吸虫病药物。对肝吸虫病、阿米巴原虫病、疟疾以及肠道线虫有一定疗效。但对神经系统的不良反应较多见,且延迟反应持续较久。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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