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191.
无定形氢氧化铁吸附水溶液中镉离子机理的XPS研究 总被引:2,自引:0,他引:2
用X射线光电子能谱研究了无定形氢氧化铁吸附水溶液中镉离子的机理,结果表明,吸附镉离子后的氢氧化铁中的氧和铁都有电子的向内转移,说明吸附过程是化学吸附,吸附时氢氧化铁是作为得电子的路易斯酸,被吸附的镉是作为给电子的路易斯碱参加吸附的。 相似文献
192.
Stergios Piligkos Dr. Høgni Weihe Dr. Eckhard Bill Dr. Frank Neese Prof. Dr. Hassane El Mkami Dr. Graham M. Smith Dr. David Collison Prof. Gopalan Rajaraman Dr. Grigore A. Timco Dr. Richard E. P. Winpenny Prof. Eric J. L. McInnes Prof. 《Chemistry (Weinheim an der Bergstrasse, Germany)》2009,15(13):3152-3167
Spinning wheels : The presented highly resolved multifrequency continuous wave EPR spectra (e.g., see figure) of the heterooctametalic “wheels” Cr7M provide rare examples of high nuclearity polymetallic systems where detailed information on the spin‐Hamiltonian parameters of the ground and excited spin states is observed.
193.
Annah Gupta Sonakshi Sasan Avneet Kour Nargis Nelofar Dilip Manikrao Mondhe 《合成通讯》2019,49(14):1813-1822
In this study, we have presented the synthesis of novel 2,5,7-triarylimidazo[1,2-a]pyridine-8-carbonitriles from 2-amino-4,6-diarlypyridine-3-carbonitrile and nitrostyrene using FeCl3 (20?mol%) as Lewis acid under solvent-free conditions. A library of compounds with diverse substitutions have also been synthesized and screened for in-vitro anti-cancer activity against various cell lines such as A549 (Lung), HCT-116 (Colon), SW-620 (Colon), and MIAPACA (Pancreas). 相似文献
194.
Most previous researches indicate that about 20–55% of available tractor power is lost in the process of interaction between tires and soil surface. Vertical wheel loads and tire performance are parameters that play a significant role in controlling slip and fuel consumption of a tractor. Tractor’s slip is adjusted by attaching additional weights and/or reducing tire pressures, and this may have an impact on driving lead of front wheels. Mechanical Front-Wheel-Drive (MFWD) tractors work efficiently when driving lead of front wheels is 3–4% in soft soil and 1–2% in hard soil. This research was aimed to experimentally determine such tire pressures that allow adjusting tractor’s slip without deviating from set value of driving lead of front wheels. The research was also aimed to determine the effect of driving lead of front wheels on MFWD tractor’s slip and fuel consumption. Experimental results showed that front/rear tire pressure combinations that generate a well-targeted driving lead of front wheels have no effect on slip on hard soil; however, it significantly affect fuel consumption. Results show that when air pressures in front/rear tires varied within 80–220 kPa, driving lead of front wheels varied in the range from +7.25% to −0.5%. 相似文献
195.
We herein report a new synthetic method for the preparation of α-hydroxyketones by the dioxygenation of alkynes. The reaction proceeds at room temperature under the action of Fe porphyrin and pinacolborane under air as a green oxidant to produce α-hydroxyketones. The mild reaction conditions allow chemoselective oxidation with functional group tolerance. Terminal alkynes in addition to internal alkynes are applicable, affording unsymmetrical α-hydroxyketones that are difficult to obtain by any reported dioxygenation of unsaturated C−C bonds. 相似文献
196.
单电子转移活性自由基聚合(SET-LRP)是一种可以对聚合物进行有效分子设计,合成不同拓扑结构并且能够有效调节其相对分子质量和相对分子质量分布的新型聚合方法,具有潜在的应用前景。以2-溴丙酸甲酯作为引发剂,Cu(0)/三(N,N-二甲基氨基乙基)胺(Me6-TREN)为复合催化体系,通过在二甲基亚砜中添加不同摩尔浓度的无水FeCl_3来研究其对丙烯酸甲酯的SET-LRP聚合动力学的影响。结果表明,随着三价铁离子量的增加,其链增长速率常数下降并且出现诱导期延长现象,说明三价铁离子参与了SET-LRP的聚合动力学过程,它和在同样实验条件下二价铜所起的作用截然不同,这可能是由于三价铁离子的氧化导致反应体系中一价铜的浓度降低引起的。此项工作从另外一个角度解释了零价铜催化下SET-LRP聚合诱导期产生的原因。 相似文献
197.
High elasticity,strength, and biocompatible amphiphilic hydrogel via click chemistry and ferric ion coordination 下载免费PDF全文
An amphiphilic interpenetrating polymer network hydrogel was designed and synthesized using click chemistry and ferric ion coordination. The first polymer network was formed through the reaction of azide‐modified PEG (N3‐PEGn‐N3) and alkynyl‐pendant linear PPG derivatives ((PPGm(C≡CH))n) through click chemistry and mixed with poly(ethylene glycol‐dopamine) macromolecules. The second polymer network was formed through ferric ion coordination with poly(ethylene glycol‐dopamine). Interpenetrating polymer networks give the hydrogel unique amphiphilic properties and higher mechanical strength and thermal stability. Swelling ratio and degradation rate could be adjusted by controlling the ratio of poly(ethylene glycol‐dopamine) in the hydrogel network. Given that in vivo subcutaneous implantation revealed no infection and no obvious abnormalities, the hydrogel exhibits high biocompatibility. The feature indicates that these hydrogels have a promising application in the field of biomaterials and tissue engineering. Copyright © 2016 John Wiley & Sons, Ltd. 相似文献
198.
A novel electrochemical device for the sensitive determination of dopamine was developed based on a carbon paste electrode with polymeric ferric sulfate doped in the carbon paste and a carboxyl-functionalized carbon nanotube thin film on the surface. The modified electrode was characterized by scanning electron microscopy, electrochemical impedance spectroscopy, and cyclic voltammetry. The conditions for the preparation of electrode were optimized. The carbon nanotubes were shown to be stable on the surface of carbon paste electrode. The novel electrochemical device provided excellent activity toward dopamine. Amperometry and differential pulse voltammetry were used for the determination of dopamine in pH 7.0 phosphate buffer with a long linear range from 0.8 to 261?µM and a detection limit of 0.2?µM. The modified electrode showed excellent repeatability, good stability, and satisfactory reproducibility, thus demonstrating potential for practical applications. 相似文献
199.
建立了硫酸铁铵滴定法测定钨钛合金中钛含量的新方法。以硝酸-氢氟酸溶解样品,在25mL NaOH(100g/L)的强碱性介质中,以铁为载体,沉淀分离被测定元素钛后,用盐酸溶解沉淀。在酸性条件下,用铝片还原Ti~(4+)至Ti~(3+),以硫氰酸盐为指示剂,用硫酸铁铵标准溶液滴定至红色为终点。根据消耗硫酸铁铵滴定溶液的体积,求得样品中钛含量。按照实验方法测定样品中钛含量,结果的相对标准偏差(RSD,n=11)为0.40%,加标回收率为99.8%~101%。方法有很好的精密度和准确度,可用于钨钛合金中钛含量的分析。 相似文献
200.
FeCl2与酸性离子液在乙醇中反应制备得到咪唑硫酸铁簇合物[HMIM]2[Fe2O(SO4)3(DMSO)2]·0.5DMSO(1)和[HPIM]4[Fe4O2(SO4)6(DMSO)4]·2MeCN(2),该类簇合物为四核铁簇Fe4(O)2(SO4)6(DMSO)4结构,4个Fe原子通过中心μ3-O桥、硫酸根上的μ2-O和μ3-O桥连接,形成共平面结构,中间的四核铁簇为-4价,4个质子化的咪唑正离子起电荷平衡作用。该簇合物的晶体结构属于三斜晶系中的P1空间群。变温磁化率测试表明该簇合物具有强的反铁磁性。但在类似的反应条件下,FeCl3在酸性离子液反应没有得到类似的簇合物,而是得到DMSO配合物[FeCl2(DMSO)4][EtSO4]·DMSO(3)。 相似文献