230 resultados para Ag-ZSM-5 catalyst


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A new photoluminescent heterobimetallic Zn(II)-Ag(I) cyano-bridged coordination polymer, [Ag5Zn2(tren)(2)(CN)(9)] (tren = tris(2-aminoethyl)amine) (1), has been synthesized and structurally characterized. It features rare linear pentameric unit of dicyanoargentate(I) ions assembled by d(10)-d(10) interaction as building blocks. Solid state emission spectrum of I shows strong ultraviolet luminescence with emission peak in the range of 376 nm.

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Ag/SiO2 prepared by an in situ reduction method are found, for the first time, to be highly effective and recyclable catalysts for the selective hydrogenation of a range of chloronitrobenzes to their corresponding chloroanilines, which are of great potential as industrially viable and cheap novel catalysts for the production of chloroanilines.

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In situ IR measurements for CO adsorption and preferential CO oxidation in H-2-rich gases over Ag/SiO2 catalysts are presented in this paper. CO adsorbed on the Ag/SiO2 pretreated with oxygen shows a band centered around 2169 cm(-1), which is assigned to CO linearly bonded to Ag+ sites. The amount of adsorbed CO on the silver particles ( manifested by an IR band at 2169 cm(-1)) depends strongly on the CO partial pressure and the temperature. The steady-state coverage on the Ag surface is shown to be significantly below saturation, and the oxidation of CO with surface oxygen species is probably via a non-competitive Langmuir Hinshelwood mechanism on the silver catalyst which occurs in the high-rate branch on a surface covered with CO below saturation. A low reactant concentration on the Ag surface indicates that the reaction order with respect to Pco is positive, and the selectivity towards CO2 decreases with the decrease of Pco. On the other hand, the decrease of the selectivity with the reaction temperature also reflects the higher apparent activation energy for H-2 oxidation than that for CO oxidation.

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Ag nanoparticle embedded NaYF4:0.05Tb center dot chi Ce/ PVP (PVP stands for poly(vinyl pyrrolidone)) composite nanofibers have been prepared by electrospinning. A field emission scanning electron microscope and x-ray diffraction have been utilized to characterize the size, morphology and structure of the as-prepared electrospun nanofibers. Obvious photoluminescence (PL) of NaYF4:0.05Tb center dot 0.05Ce/PVP electrospun nanofibers due to the efficient energy transfer from Ce3+ to Tb3+ ions is observed. The PL intensity of the electrospun nanofibers decreases gradually with the addition of Ag nanoparticles. No obvious surface plasmon resonance enhanced luminescence is observed. The reasons for the weakening of the emission intensity with the addition of Ag nanoparticles have also been discussed in this work.

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制备了化学稳定的Er^3+/Yb^3+共掺的磷酸盐玻璃,并在其中制作了用于光放大器和激光器的平面光波导.这种磷酸盐玻璃的失重速率为4.7×10^-5g·cm^-2·hr^-1,小于Kigre公司商业化的磷酸盐玻璃QX/Er的失重速率.采用Ag^+-Li^+交换技术制作了平面光波导并用m-线光谱在632.8nm测量了平面光波导的有效折射率.根据反WKB法得到折射率形貌,计算了离子交换参数如:离子交换深度、表面折射率,折射率改变和扩散系数等.

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We obtain Au and Ag nanoparticles precipitated in glasses by irradiation of focused femtosecond pulses, and investigate the nonlinear absorptions of the glasses by using Z-scan technique with ns pulses at 532 nm. We observe the saturable absorption behavior for An nanoparticles precipitated glasses and the reverse saturable ones for Ag ones. We also obtain, by fitting to the experimental results in the light of the local field effect near and away from the surface plasmon resonance, chi(m)((3)) = 4.5 x 10(-7) and 5.9 x 10(-8) esu for m the imaginary parts of the third-order susceptibilities for Au and Ag nanoparticles, respectively. The nonlinear response of Au nanoparticles in the glass samples arises mainly from the hot-electron contribution and the saturation of the interband transitions near the surface plasmon resonance, whereas that of Ag nanoparticles in the glass samples from the interband transitions. These show that the obtained glasses can be used as optoelectronic devices suiting for different demands. (c) 2005 Elsevier B.V. All rights reserved.

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报道了锦蛇属团花锦蛇( E. davidi) 、绿锦蛇( E. prasina) 和三索锦蛇( E. radiata) 3 个种的核型和Ag - NORs ,团花锦蛇的核型2 n = 36 (8V + 6sV + 2I + 20M) ;绿锦蛇的核型2 n = 36 (7V + 7sV + 2I + 20m) ,三索锦蛇的 核型2 n = 40 (6V + 3sV + 2sI + 5I + 24m) ; ①团花锦蛇和绿锦蛇的染色体数目和结构与此属大多数种的相似, ; ② 此属种类的性染色体为ZW型,绿锦蛇的性染色体为第4 对大染色体,三索锦蛇的为第5 对大染色体,团花锦蛇 由于为雄性,未见染色体异型. ③Ag - NORs 在数目及在染色体上的位置均不相同,团花锦蛇的NORs 在第9 对 染色体上,数目为2 个;绿锦蛇的NORs 在第5 对染色体上,数目为4 个;三索锦蛇的NORs 在第4 对大染色体上, 数目为4 个; ④我们发现三索锦蛇较为特殊,其染色体数目、形态、性染色体的位置和形态及Ag - NORs 均与其 它种类不同. 可能的原因是此物种在核型演化过程中发生过染色体断裂和重排事件,提示三索锦蛇可能是一个 特化的类群. ⑤锦蛇属的种类可分为包括三索锦蛇为特殊的一组的4 个组. 图版1 表2 参18