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1)  multi_cation α-sialon
复合掺杂α-sialon
2)  composite doping
复合掺杂
1.
Influence of composite doping on magnetic properties for NiCuZn ferrite;
复合掺杂对NiCuZn铁氧体磁性能的影响
2.
A modified cathode material of LiNi1/3Co1/3Mn1/3O2 with the layered structure was prepared by composite doping with F and Si ions under oxygen atmosphere using (Ni1/3Co1/3Mn1/3)(OH)2 as the precursor obtained by co-precipitation method.
以共沉淀法合成的(Ni1/3Co1/3Mn1/3)(OH)2为前驱体,在氧气氛中合成了层状正极材料LiNi1/3Co1/3Mn1/3O2,用F、Si离子复合掺杂的方法对其进行改性。
3.
0-10 mol% nano-Sm2O3,nano-ZrO2(3Y) powder was used as raw materials for composite doping.
0-10%)的纳米Sm2O3粉进行复合掺杂。
3)  Co-doping
复合掺杂
1.
Studies on the Co-doping Modified Spinel LiMn_(1.98)Cr_(0.02)O_(4-y)Cl_y;
复合掺杂改性的尖晶石LiMn_(1.98)Cr_(0.02)O_(4-y)Cl_y的研究
2.
Electrochemical performance of spinel LiMn_2O_4 with Li and Al co-doping
Li、Al复合掺杂的尖晶石LiMn_2O_4的电化学性能
3.
The co-doping modified spinel LiMn1.
<正>采用改进的高温固相法合成了阴阳离子复合掺杂改性的锂离子电池尖晶石结构正极材料LiMn1。
4)  codoping
复合掺杂
1.
To investigate the effect of La(III) and Sr(II) codoping on the electrochemical performance of the samples,simulated batteries with the prepared codoping nickel hydroxide as cathode active material and metal hydride as counter electrode were assembled.
采用微乳液快速共沉淀法制备稀土La(III)与Sr(II)复合掺杂非晶态氢氧化镍粉体。
5)  BN/SiAlON ceramics
BN掺杂SiAlON陶瓷
6)  complex additives
复合掺杂剂
1.
The introduce of complex additives made the cubic structure of the sample stable,and the conductivity was enhanced due to the increase of the crystal lat- tice and the oxygen transfer passage radii,reaching 0.
复合掺杂剂的加入使材料保持稳定的立方结构,且增大了样品晶格常数和氧空位迁移半径R值。
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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