Preparation of Kaolinite/ p-Toluene Sulfonic Acid Intercalation Compound by Melting Method 熔融法制备高岭石/对甲基苯磺酸插层复合物
Preparation of silicon carbide whisker/ alumina composite ceramic powder from kaolinite/ polystyrene intercalation compound by carbothermal reducing reaction 高岭石/聚苯乙烯插层复合物碳热还原反应制备碳化硅晶须/氧化铝复相陶瓷粉体氮化硅低温转化合成碳化硅晶须研究
Preparation of MoS_2 and Its Intercalation Compound and Their Performance Study MoS2及其夹层化合物的制备与性能研究
Lithium ion rechargeable battery is developed based on the principle of lithium ion intercalation and deintercalation on a carbon negative electrode and an intercalation compound positive electrode. 锂离子蓄电池是以锂离子在碳负极和嵌入化合物正极中的嵌入和脱嵌为原理发展起来的一种新型蓄电池。
X-ray analysis of graphite sulphuric acid intercalation compound 石墨&硫酸插层化合物的X射线分析
Using a kaolinite/ DMSO intercalation compound as a precursor, a kaolinite/ pyridine N-oxide intercalation compound was prepared by microwaves. The product was characterized by XRD and FT-IR. 以高岭石/DMSO插层复合物作为前驱体,在微波辐射下成功制备了高岭石/N-氧化吡啶插层复合物,采用X-射线衍射、FT-IR光谱等技术对产物进行表征。
SEM investigation of micro sliding on graphite intercalation compound 钢球在石墨层间化合物上微滑动的SEM观察
A Study of Laws of Forming Graphite Intercalation Compound ( GIC) by the Method of Chemical Bond Parameter Function 用键参数函数法研究石墨层间化合物(GIC)的形成规律
Synthesis and characterize of the tin-graphite intercalation compound Sn石墨层间化合物的合成及表征
Preparation of a kaolinite-polyacrylonitrile intercalation compound 高岭石&聚丙烯腈夹层复合物的制备
A kaolinite/ benzamide intercalation compound was prepared by melting intercalation method using a kaolinite/ dimetyl sulfoxide intercalation compound as an intermediate. The product was characterized by powder X-ray diffractometry and Fourier transformed infrared spectroscopy. 以高岭石/二甲亚砜作为前驱物,用熔融插层法成功制备了高岭石/苯甲酰胺插层复合物,产物用X射线粉晶衍射和Fourier变换红外光谱进行了表征。
Graphite intercalation compound& a new kind of nano composite material 一种纳米复合材料&石墨层间化合物的结构与合成
Graphite intercalation compound ( GIC) is a new kind of nano composite material. The characterization, synthesis and application of GICs were investigated in this study. 对一种特殊的纳米复合材料&石墨层间化合物(简称GIC)进行了研究,探讨了GIC纳米结构的表征、合成以及应用。
Preparation and Preliminary Experimental Studies of Intercalation Compound Li_xVO_2 插层化合物LixVO2的实验研究
The experiment indicates the presence of hydrogen bonding between the inner surface hydroxyls of the kaolinite and the amino groups of benzamides in the kaolinite-benzamide intercalation compound; 苯甲酰胺分子的氨基与高岭石的内表面羟基形成了氢键,苯甲酰胺分子可能以单分子层垂直排列于高岭石层间。
It is reported that a new kind of fast preparation of kaolinite-dimethyl sulfoxide intercalation compound ( Kao-DMSO). 本文报道了一种快速制备高岭石-二甲基亚砜插层复合物(Kao-DMSO)的新方法。
The basal spacing of kaolinite-pyridine intercalation compound was 1.22 nm under wet conditions. 在保持吡啶润湿的条件下,高岭土的层间距增加到1.22nm。
Preparation and physical properties of intercalation compound li_ ( 1+ x) v_3o_8 插层化合物Li(1+x)V3O8的合成及其物理性能的初步研究
Preparation and Characterization of Poly ( ethylene oxide)/ Montmorillonite Intercalation Compound 聚氧化乙烯/蒙脱土纳米嵌入化合物的制备与结构表征
Ion Intercalation Compound as Electrode Materials of Supercapacitor 插入型化合物作为超级电容器电极材料
Preparation and preliminary experiment studies of intercalation compound liv_2o_4 插层化合物LiV2O4的制备与实验研究
Study of structural model of C_X~+. HSO_4~-intercalation compound CX~+.HSO4~-插层化合物结构模型的研究
Micro-size graphites, solvent concentration, synthesis time will have a less influence on the third stage graphite intercalation compound, a greater change on the intercalation rate. 合成中石墨鳞片大小,溶液浓度,合成时间等对石墨层间化合物的阶数影响不大,但却使层间化的量发生很大变化。
X-ray analysis of graphite material and expandable graphite was carried out, and the results testified the creation of intercalation compound and its 'inadequacy. 分别对原料石墨和制得的可膨胀石墨进行Xray衍射扫描分析,证实了插层反应的存在及插层反应的不完全性;
A study on the stability of h_2so_4 graphite intercalation compound H2SO4石墨层间化合物稳定性分析研究
The study on Li based intercalation compound LiMn 2O 4 synthesized by microwave sintering 锂嵌脱化合物LiMn2O4的微波烧结研究
Thermal analysis of kaolinite/ dimethyl sulfoxide intercalation compound 高岭石/二甲亚砜插层复合物的热分析
Preparation of C+ x · HSO-4 intercalation compound by hydrothermal synthesis method is reported, the effects of principal reaction conditions such as oxidizer, intercalant, reaction time, reaction temperature and ratios of starting materials are studied. 通过水热法成功地合成了C+x·HSO-4石墨插层化合物,讨论了氧化剂、插入剂、反应时间、反应温度和原料配比等对插层反应的影响,以及热力学对插层反应的影响。
As a novel nanocomposite material, kaolinite intercalation compound has potential applications in high-performance polymer matrix composite materials, electrochemical functional materials, nonlinear optical materials and drug delivery materials. 高岭石插层复合物作为一种新型的纳米复合材料,在高性能聚合物基复合材料、电化学功能材料、非线性光学材料、药物缓释材料等方面具有潜在应用价值。