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91.
92.
《Chemphyschem》2006,7(1):117-130
Ultra‐wideline 27Al NMR experiments are conducted on coordination compounds with 27Al nuclei possessing immense quadrupolar interactions that result from exceptionally nonspherical coordination environments. NMR spectra are acquired using a methodology involving frequency‐stepped, piecewise acquisition of NMR spectra with Hahn‐echo or quadrupolar Carr–Purcell Meiboom–Gill (QCPMG) pulse sequences, which is applicable to any half‐integer quadrupolar nucleus with extremely broad NMR powder patterns. Despite the large breadth of these central transition powder patterns, ranging from 250 to 700 kHz, the total experimental times are an order of magnitude less than previously reported experiments on analogous complexes with smaller quadrupolar interactions. The complexes examined feature three‐ or five‐coordinate aluminum sites: trismesitylaluminum (AlMes3), tris(bis(trimethylsilyl)amino)aluminum (Al(NTMS2)3), bis[dimethyl tetrahydrofurfuryloxide aluminum] ([Me2‐Al(μ‐OTHF)]2), and bis[diethyl tetrahydrofurfuryloxide aluminum] ([Et2‐Al(μ‐OTHF)]2). We report some of the largest 27Al quadrupolar coupling constants measured to date, with values of CQ(27Al) of 48.2(1), 36.3(1), 19.9(1), and 19.6(2) MHz for AlMes3 , Al(NTMS2)3 , [Me2‐Al(μ‐OTHF)]2 , and [Et2‐Al(μ‐OTHF)]2 , respectively. X‐ray crystallographic data and theoretical (Hartree–Fock and DFT) calculations of 27Al electric field gradient (EFG) tensors are utilized to examine the relationships between the quadrupolar interactions and molecular structure; in particular, the origin of the immense quadrupolar interaction in the three‐coordinate species is studied via analyses of molecular orbitals. 相似文献
93.
94.
Shiyang Sun Shouye Sun Yuan Ren Xin Tan Pingping Xu 《Surface and interface analysis : SIA》2020,52(4):167-173
The surface structure and properties of aluminum nitride (AlN) play an important role in many applications. Using the first principle calculations method, we analyzed the surface terminal structure of AlN and its evolution under different conditions by determining the surface energy, adsorption energy, and evaporation energy of the Al and N terminals on the AlN(0001) surface. Our results show that the reason why the N terminal is less stable than the Al terminal is not only because of its high surface energy but also because its adsorption performance is extremely sensitive to the adsorption position. The surface N atoms combine to form N2 molecules that escape during the evaporation process at high temperature. After surface N atoms escape, the AlN surface structure reconstitutes to form a hexagonal closest packing (HCP)–like structure, and the energy barrier for the reconstructing process is 3.2 eV. This shows that the structure and form of the AlN(0001) terminals depend on the environmental conditions. 相似文献
95.
96.
Gallardo J. Duran A. Garcia I. Celis J.P. Arenas M.A. Conde A. 《Journal of Sol-Gel Science and Technology》2003,27(2):175-183
Sol-gel hybrid organic-inorganic and inorganic SiO2-based protective coatings with and without added 3 m glass particles were developed and tested for their corrosion and wear behavior of an stainless steel substrate (AISI316L). The corrosion resistance greatly increases by incorporating glass particles in the sols. The incorporation of particles in the coatings allows the synthesis of thicker crack-free coatings. On the other hand, the corrosion resistance increases for coatings with a higher organic content obtained at lower sintering temperature. These coatings are also highly stable in saline aqueous solutions. However, the wear resistance is badly affected by the hybrid character of the SiO2 matrix. The optimum coating process in terms of corrosion and wear resistance, appears to be a hybrid system with a dense SiO2 network achieved at intermediate sintering temperatures. 相似文献
97.
Porous anodic alumina (PAA) was used as a template to prepare Co nanowires array from 1-ethyl-3-methylimidazolium chloride ionic liquid by direct current method. The surface morphology of porous anodic alumina template was observed by field emission-scanning tunneling microscopy (FE-SEM) before and after the electrodeposition of Co nanowires. The electrodeposition of Co nanowires was characterized by transmission electron microscopy (TEM) and X-ray powder diffraction (XRD). TEM results indicate that the Co nanowire surface is coarse and porous when aqueous solution was used as electrolyte, and the Co nanowire deposited from the ionic liquid is uniform and smooth. XRD results show that the electrodeposition of Co is a mixture of crystal and microcrystal phase. 相似文献
98.
The reduction of prochiral ketones using chiral reducing reagents, prepared from lithium aluminum hydride and (-)-(1R, 2S, 3S, 5R)-10-anilinopinanediol (5) and (-)-(1R, 2S, 3S, 5R)-10-N-methylanilinopinanediol (6), affords chiral secondary alcohols in useful chemical yields (70 ~ 93%) but in low optical purity (8 ~ 33% ee). Modifiers 5 and 6 are synthesized from (lR)-(-)-β-pinene in three steps. 相似文献
99.
Heng-dao Quan Hui-e Yang Masanori Tamura Akira Sekiya 《Journal of fluorine chemistry》2004,125(7):1169-1172
A novel fluorination reagent and catalyst, SbF5/PAF (porous aluminum fluoride), was prepared by impregnating SbCl5 into PAF and then treating with anhydrous hydrogen fluoride. The prepared reagent had an excellent catalytic activity in halogen-exchange, and also improved the properties of SbF5, such as hydroscopicity, corrosion, and toxicity. SbF5/PAF was successfully used in organic synthesis as a fluorinating reagent, and a fixed bed catalyst for F/Cl exchange. 相似文献
100.
采用动电位扫描法、电化学交流阻抗法和表面分析方法研究了假单胞菌的加入对A3钢在枝孢霉菌溶液中腐蚀行为的影响. 结果表明, 假单胞菌的存在影响了A3钢在枝孢霉菌体系中阳极的反应过程, 假单胞菌与枝孢霉菌混合体系(简称假-枝混合菌体系)中A3钢的自腐蚀电流小于枝孢霉菌单种菌体系, A3钢的腐蚀速率减小;随着浸泡时间的延长, 从第7天开始, A3钢电极在假-枝混合菌体系中的阻抗值较之同样浸泡天数的枝孢霉菌单种菌体系的阻抗值大, 假单胞菌的存在抑制了枝孢霉菌对A3钢的腐蚀. SEM结果表明, A3钢在枝孢霉菌和假-枝混合菌体系中均发生了点蚀,枝孢霉菌单菌体系中A3 钢的点蚀坑大而深, 假-枝混合菌体系中的点蚀坑与枝孢霉菌体系相比小而浅. 相似文献