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31.
S. L. Oswal R. G. Sindhe A. T. Patel J. P. Dave S. G. Patel B. M. Patel 《International Journal of Thermophysics》1992,13(4):617-628
Viscosities of several mono-, di-, and trialkylamines have been measured in the temperature range 298 to 333 K. It is observed that viscosities are highly dependent on shape, size, and association through H-bond or through dipole. Following the transition state theory, energy, Gibbs free energy, and entropy of activation of viscous flow have been calculated. The values of expansion energy for these liquids have also been calculated using free volume theory, and subsequently amines have been classified as volume-restrained or energy-restrained liquids. The group contribution method of Van Velzen, Cardozo, and Langenkamp for estimating viscosity has been examined with the present and literature data, and the new group contribution increments N
i and B
i for amines have been evaluated. 相似文献
32.
Xiaojie Lv Jingjing Wang Danning Ding Jiaojiao Liang Zhongzheng Zhao Yuan Liang Zhenfei Zhang Chunlin Ye Yuwei Chen Peng Wei Yanping Wang Yong He Yumin Xia 《大分子材料与工程》2021,306(12):2100560
In this study, a kind of imidazole type poly(ionic liquid) ([PEP-MIM]Cl) is synthesized, which can disperse carbon effectively. [PEP-MIM]Cl is used as an intermediate to coat carbon on the poly(acrylic acid)(PAA-co-MBA) via ion exchange to obtain conductive polymer composite (CPC). A series of characterizations are performed. Experiments show that carbon can be coated on the PAA-co-MBA uniformly, and compared with using carbon as filler, this method requires less carbon to achieve good conductive performance. The carbon layer on the polymer's surface is enriched via the swelling-shrinking properties of PAA-co-MBA according to the SEM images. Furthermore, in combination with 3D printing technology, PAA-co-MBA can be designed into different shapes to achieve various functions such as pressure-sensing element. Finally, a new type of CPC named carbon clad polymeric laminate (CCPL) is prepared by using the carbon coating method and 3D printing technology. It has the potential to replace copper clad laminate (CCL) and printed circuit board (PCB), to a certain extent. This technology expands the preparation method and application of the CPC such as flexible and wearable conductive fabrics. 相似文献
33.
AlCl3-BMIC离子液体的电导率 总被引:2,自引:0,他引:2
研究AlCl3-BMIC(氯化-1-甲基-3-丁基咪唑)离子液体电导率与温度、组分之间的关系。结果表明:当离子液体中AlCl3的摩尔分数x(AlCl3)<0.667时,离子液体的电导率随着x(AlCl3)的增加而增大;但在0.6670.5的路易斯酸性区域,x(AlCl3)对温度系数α、β的影响均不明显。 相似文献
34.
1 INTRODUCTIONWorldwide research and efforts are currentlyunderway to fabricate all solid state, rechargeableLi and Li ion batteries utilizing Li+ conductivepolymer electrolytes[1]. Solid polymer electrolytespossesses many advantages including high ionicconductivity, high specific surface energy, solventfree, wide electrochemical stability windows, lightand easy processability[2]. Apart from polyethy lene oxide ( PEO )[3], poly ( vinyl alcohol )(PAV)[4], … 相似文献
35.
LaF3 superfine powder was synthesized from La(CH3COO)3 and NH4 F by microwave heating method,using ethanol or pure water as dispersants respectively. The results of XRD and SEM indicate that the superfine powder has high purity, regular particle shape and narrow distribution of granularity. The granularity of the best sample is in the range of 100 -200 nm. The influence of different dispersants on the crystal degree and microstructure was discussed. After the superfine powder was formed into a slice at pressure of 25 - 60 MPa, its electrochemical impedance spectroscopy was tested by electrochemical impedance spectroscopy (EIS) measurement. The result shows that the grain refining of LaF3 powder increases its ionic conductivity. Compared with traditional preparation methods of LaF3 powder, the advantages of microwave heating method were summarized. 相似文献
36.
6万t/a离子膜烧碱装置新技术的攻关 总被引:1,自引:0,他引:1
介绍了离子膜烧碱生产中的新工艺、新技术的应用及产生的经济效益和社会效益。 相似文献
37.
38.
Volumetric measurements were made on compressed solutions of carbon dioxide in n-decane and trans-decalin at 37.78°C at pressures up to 60 bar. The data were numerically analyzed to yield the isothermal compressibility function of the solutions at their saturation pressures. 相似文献
39.
40.
On the Predominant Electron-Donicity of Polar Solid Surfaces 总被引:2,自引:0,他引:2
The reasons for the predominant electron-donicity of almost all solid polar surfaces and its implications are discussed in this paper. By contact angle or interfacial tension measurements, the electron-accepting as well as the electron-donating properties of polar liquids can be ascertained, through the interplay between their energies of adhesion and cohesion. For the solid-liquid interface, direct interfacial tension measurements are not possible, but indirectly, solid/liquid interfacial tensions of polar systems can be obtained by contact angle measurement. However, as the energy of cohesion of a solid does not influence the contact angle formed by a liquid drop placed upon its surface, one can only measure the solid surface'ks residual polar property, manifested by the energy of adhesion between solid and liquid. This residual polar property is of necessity the dominant component; in most cases this turns out to be its electron donicity. When, by means of contact angle measurements with polar liquids, both electron-accepting and electron-donating potentials are found on a polar solid, it is most likely still partly covered with a polar liquid: usually water. The amount of residual water of hydration of a polar solid follows from its polar (Lewis acid-base) surface tension component (γAB). The degree of orientation of the residual water of hydration on a polar solid can be expressed by the ratio of the electron-donating to electron-accepting potentials (γ⊖/γ⊕), measured on the hydrated surface. 相似文献