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Ruthenium catalysts are known to be quite sensitive to the nature of supports, promoters and precursors in ammonia synthesis.

介绍了系氨合成催化剂的载体、促进剂、活性前身物对氨合成催化活性的影响。

The analytic method of determining the content of ruthenium in ruthenium trichloride by hydrogen reduction gravimetric method were studied systematically.

系统地研究了通氢还原重量法测定三氯化含量的分析方法。

In this dissertation, synthesis of benzylidene[1,3-bis(2,6-dimethylphenyl)-4,5-dihydroimidazol-2-ylidene]dichlororuthenium (41) has been improved.

本论文首先改进了卡宾配合物[1,3-二-(2,6-甲苯基)-4,5-二氢咪唑基]-苯亚甲基-三苯基膦-二氯合(41)的合成方法。

In all of ruthenium complex being used as CL reagent, tris-(2,2'-bipyridine) ruthenium Ru(bipy32+ is the most widely used and the analytical application of this reagent is mainly based on its electrogenerated chemiluminescence reactions.

三(2,2'-联吡啶)[Ru_3~(2+)]是目前最为常用的一个配合物类化学发光试剂,它的分析应用主要是通过电致化学发光方法实现的。

In this project, a series of novel polypyridine ligands and their ruthenium complexes were synthesized. The scope of this work is focused on the construction of multinuclear complexes, the controlling of electron and energy transfer in polynuclear complexes, NLO materials and molecular recognition, The results should be of value in further understanding the properties of the Ru complex, as well as laying the foundation for the rational design of Molecular devices based on Ru complexes.

本课题的主要目的是应用化学手段,设计合成出一系列结构新颖的多吡啶配体及其配合物,在多核配合物的构筑、电子和能量转移调控、非线性光学材料和分子识别等方面进行重点研究,旨在进一步丰富和发展多吡啶配合物化学。

Trace Ru could sensitively catalyze the fading reaction of chlorosulphophenol azo rhodanine with KClO3 in H2SO4 medium in water bath at 85 ℃, and the fading level was in direct proportion to Ru in certain content range. Based on this, a novel determination method of trace ruthenium was established by catalytic kinetic spectrophotometry.

H2SO4介质中,水浴85℃条件下,痕量Ru能灵敏地催化KClO3氧化氯磺酚偶氮罗丹宁的褪色反应,且褪色程度与含量在一定范围内成正比,据此建立了催化动力学光度法测定痕量的新方法。

This paper also make research on the influence of heat treatment technology on the resistance and TCR of different thick film elements including Ag-Pd, bismuth ruthenate and copper ruthenate, and influence of heat deposition technology on the consistency of resistance of the elements.

此外,论文研究了热处理对Ag-Pd、酸铋、酸铜三种不同材料体系厚膜电阻元件的阻值、电阻温度系数的影响和热存放对电阻元件阻值一致性的影响。

The above performance could meet the requirement of braking. The result showed that heat treatment technology could preferably improve the electric characteristics of the thick-film elements. The best heat treatment technology of Ag-Pd resistance elements kept at 210℃for 130h, bismuth ruthenate resistance elements kept at 150℃ for 50h and copper ruthenate resistance elements kept at 180℃ for 50h.

热处理实验结果表明:热处理可改善厚膜电阻元件电性能,Ag-Pd电阻元件最佳热处理工艺为210℃保温130h,酸铋电阻元件最佳热处理工艺为150℃保温50h,酸铜电阻元件最佳热处理工艺为180℃保温50h。

At this point, sheet resistivity is minimal. Meanwhile, TCR and the refiring change ratio is near to zero. Compound inorganic binder was put forward firstly. The controllable regulation on refiring change ratio can be acquired by linear principle. When the volume ratio is 1:1, the best sintering temperature is 865℃.

实验发现,复合无机粘结相对膜层电性能和重烧变化率的影响近似满足线性复合效应;采用体积比为1:1的钙铝硅玻璃和铅硼硅玻璃作为复合无机粘结相,最佳烧结温度在865℃;铅硼硅玻璃与酸铋置换反应生成酸铅&过渡层&,实现界面的渐变,使膜层性能得到改善。

Part II:A novel conductive composite film (MWCNTs-RuOx) containing multi-walled carbon nanotubes with ruthenium oxide was synthesized on glassy carbon electrode, gold and indium tin oxide, screen printed carbon electrode by potentiostatic methods.

第二部分的氧化-奈米碳管薄膜(MWCNTs-RuOx)是一种新的传导性复合薄膜,包含多层奈米碳管与氧化物,可藉由电位静力学法制备在玻璃碳电极、黄金电极、铟锡氧化物电极和网板碳电极上。

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推荐网络例句

On the other hand, the more important thing is because the urban housing is a kind of heterogeneity products.

另一方面,更重要的是由于城市住房是一种异质性产品。

Climate histogram is the fall that collects place measure calm value, cent serves as cross axle for a few equal interval, the area that the frequency that the value appears according to place is accumulated and becomes will be determined inside each interval, discharge the graph that rise with post, also be called histogram.

气候直方图是将所收集的降水量测定值,分为几个相等的区间作为横轴,并将各区间内所测定值依所出现的次数累积而成的面积,用柱子排起来的图形,也叫做柱状图。

You rap, you know we are not so good at rapping, huh?

你唱吧,你也知道我们并不那么擅长说唱,对吧?