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91.
92.
Inmaculada Escorihuela Larry R. Falvello Milagros Tomás 《Journal of Cluster Science》2004,15(4):425-435
The reaction of the tetranuclear cyanide aquo complex [{Pt(CN)4Cu(bipy)(H2O)}2]· 2H2O with aqueous ammonia produces the new tetranuclear ammino-containing product [{Pt(CN)4Cu(bipy)(NH3)}2] (1), with terminal cyanide groups and with NH3 coordinated to the Cu atom. The distorted trigonal bipyramidal coordination about copper in 1 differs from the square-pyramidal coordination present in the starting material. The bipyridine ligand in 1 is nearly perpendicular to the tetranuclear core of the molecule, as opposed to its coplanar disposition in the aquo complex. The two platinum atoms of the tetranuclear core in 1 form Pt···Pt interactions of 3. 2390(8) Å with platinum atoms of neighboring molecules, producing an echelon-shaped supramolecular chain held together by staggered (CN)4Pt···Pt(CN)4 linkages, an aggregate structure which does not have a precedent in chemistry derived from the Pt(CN)4 building block. 相似文献
93.
The thermal decomposition of the Pt(II) complexes with cyclobutane-and cycloheptanespiro-5′-hydantoins were studied by TG
and DTA techniques. The Pt(II) complex with cyclobutanespiro-5′hydantoin (PtCBH) was stable up to 115°C (388 K) and Pt(II)
complex with cycloheptanespiro-5′-hydantoin (PtCHTH) was stable up to 150°C (423 K). After the thermal decomposition of PtCBH
the solid residue was platinum, while the decomposition of PtCHTH gave a mixture of platinum carbides (PtC2, Pt2C3). 相似文献
94.
利用程序升温电导法(TPEC)和程序升温还原法(TPR),研究比较了还原气氛下Pt/MoO_3和Pt/Co_3O_4体系中不同类型的半导体氧化物和吸附氢之间电荷和物种交换的规律.发现微量Pt通过吸附解离H_2成为原子氢,在较低温度下大大加快n型半导体氧化物MoO_3和氢之间电子传递速度,显著地降低MoO_3的还原温度,但在同样条件下却不能有效地活跃p型半导体氧化物Co_3O_4和氢之间的电子传递,因而不能明显地促进Co_3O_4的还原.导致此现象的原因,可能与不同类型的半导体导电机构不同而引起的对氢的敏感程度不同有密切关系. 相似文献
95.
Neutrino induced transition rates from205Tl to excited states in205Pb were calculated for neutrino fluxes from the different hydrogen burning reactions in the sun. Suppression factors for electron neutrinos due to flavor oscillations in the sun were obtained. The influence of neutrino oscillations on the neutrino capture rate of205Tl in dependence of the mixing angle and neutrino mass difference is discussed.Dedicated to Prof. Dr. P. Kienle on the occasion of his 60th birthday 相似文献
96.
97.
A. M. Garrido Pedrosa M. J. B. Souza D. M. A. Melo A. S. Araujo 《Journal of Thermal Analysis and Calorimetry》2007,87(2):351-355
The thermo-programmed reduction study of
Pt/WOx–ZrO2 materials
prepared with different tungsten loading were performed by thermogravimetry.
The samples were synthesized by impregnation method and calcined at 600, 700
and 800°C. The characterizations of both un-calcined and calcined materials
were carried out using different techniques: thermal analysis (TG and DTA),
X-ray diffraction (XRD) and thermo-programmed reduction (TPR). TG and DTA
analysis of un-calcined were used to determination of calcination temperatures
of the samples. XRD diffractograms were useful to help us in the determination
of phase presents. TPR profiles showed between three and four events at different
temperatures attributed to platinum reduction and the different stages of
tungsten specie reduction. 相似文献
98.
99.
100.
Facile Fabrication of Well‐Dispersed Pt Nanoparticles in Mesoporous Silica with Large Open Spaces and Their Catalytic Applications 下载免费PDF全文
Xianchun Liu Dashu Chen Lin Chen Renxi Jin Dr. Shuangxi Xing Dr. Hongzhu Xing Prof. Yan Xing Prof. Zhongmin Su 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(27):9293-9298
In this paper, a facile strategy is reported for the preparation of well‐dispersed Pt nanoparticles in ordered mesoporous silica (Pt@OMS) by using a hybrid mesoporous phenolic resin‐silica nanocomposite as the parent material. The phenolic resin polymer is proposed herein to be the key in preventing the aggregation of Pt nanoparticles during their formation process and making contributions both to enhance the surface area and enlarge the pore size of the support. The Pt@OMS proves to be a highly active and stable catalyst for both gas‐phase oxidation of CO and liquid‐phase hydrogenation of 4‐nitrophenol. This work might open new avenues for the preparation of noble metal nanoparticles in mesoporous silica with unique structures for catalytic applications. 相似文献