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1.
Preparation and Electrochemical Performance of Cathode Material Carbyne Polysulfide for Lithium Batteries
多硫化碳炔的制备及其电化学性能的研究
2.
Research of Carbyne Polysulfide as Cathode Material in Rechargeable Lithium Batteries;
多硫化碳炔作为锂二次电池正极材料的研究
3.
Research on Carbyne-polysulfide as Cathode Material in Lithium Batteries
锂电池正极材料多硫化碳炔的制备及性能研究
4.
Preparation and Electrochemical Performance of Carbyne Polysulfide as a Cathode Material for Lithium Batteries
锂电池正极材料多硫化碳炔的制备及电化学性能
5.
Preparation and Electrochemical Performance of Cathode Material Crabyne Polysulfide for Lithium Batteries;
锂电池正极材料多硫化碳炔的制备及其电化学性能研究
6.
Charge-discharge Principle of Crabyne Polysulfide as Cathode Material for Lithium Batteries
二次锂电池用正极材料多硫化碳炔充放电机理探讨
7.
studying polysulfides linking on conductive polymers, such as carbyne, PPP and PAn, as cathode materials of secondary lithium batteries.
研制以碳炔、聚苯撑、聚苯胺等为骨架的高分子多硫化物作为二次锂电池正极材料。
8.
The Research of Conductive Composite-Sulfonated Polyphenylacetylene/Multi-walled Carbon Nanotubes;
导电复合材料磺化聚苯乙炔/多壁碳纳米管研究
9.
Carbozincation of Acetylenic Sulfones and Its Applications in the Synthesis of Polysubstituted Olefins
炔基砜的碳锌化反应及其在多取代烯烃合成中的应用
10.
Carbomagnesiation of Acetylenic Sulfones and Its Applications in the Synthesis of Polysubstituted Alkenes;
炔基砜的碳镁化反应及其在多取代烯烃合成中的应用研究
11.
The experiment showed that carbyne did react with sulfur when they were mixed.
实验结果说明硫与碳炔的确发生了反应。
12.
carbon disulphide
二硫化碳( 工业用 )
13.
Preparation of Carbon Nanofibers by Catalytic Pyrolysis Ethine using Cu/La_2O_3 as the Catalyst
Cu/La_2O_3催化裂解乙炔制备碳纳米纤维
14.
Study on Thermal Stability of Carbyne and the Mixture of Carbyne and Sulfur by In-situ FTIR Spectroscopy
原位红外光谱法研究碳炔及与硫的混合物的热稳定性
15.
Unique chemical properties of metal-carbon bonds in metal-carboranyl and metal-carboryne complexes
碳硼烷和碳硼炔金属配合物中金属-碳键的化学性质
16.
Preparation and Dispersivity of Multiwalled Carbon Nanotubes Coated by Poly(phenylacetylene)
聚苯乙炔包覆多壁碳纳米管的制备及其分散性
17.
Polycondensation of acetylide by coordination catalysis to α or β-carbyne
配位催化乙炔化物合成α及β线型碳的研究
18.
One-pot Synthesis of Methylthio Aryl Alkynes and Researches on the Mechanism;
甲硫芳炔化合物的一锅合成及机理研究