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1.
张强  千载虎 《分子催化》1997,11(5):332-336
应用ESR,空气气氛下DTA,氢气氛下TPSR,IR等技术手段,对反应后催化剂的积炭行为进行了研究。结果表明,反应后的催化剂表面不同程度地存在着不同类型和积炭,积炭是催化剂失活的主要原因。  相似文献   
2.
本文报道以聚苯并咪唑(PBI)与某些过渡金属卤化物所形成的金属复合物的XPS研究,由反映在金属复合物N_(1s)和C_(1s)振起(Shake-up)伴峰的消失,反映在PBI中N_(1s)双峰变为复合物中的具有高结合能的单峰以及与其复合金属离子结合能的降低,这就从施受两个侧面确证金属复合物的形成。XPS结果也说明在金属复合物的制备中,不同溶剂条件所制得的复合物在硅氢加成中活性丧失归结於溶剂导致的金属离子的还原。  相似文献   
3.
研究了钙钛矿型LaSrCoCu_xO_3催化剂对CO氧化反应的催化活性及其表面氧的催化作用.结果表明,x=0.4的催化剂对CO氧化具有最高催化活性,常压及本实验条件下CO完全氧化的最低温度为168℃;催化剂均为氧缺陷化合物,吸附于表面晶格氧缺陷上的吸附氧是CO氧化反应的活性氧物种;并发现催化剂中存在有非常价态的C04 ,认为CO氧化反应是通过吸附氧调变Co3 和Co4 价态而进行.  相似文献   
4.
The syntheses of transition metal promoted (M = Co, Cr, Fe, Mo) supported vanadium phosphate (VPO) catalysts (TiO2 (anatase), γ‐Al2O3) and their characterization by N2‐adsorption, X‐ray diffractometry (XRD), FTIR‐spectroscopy and determination of V‐valence state is reported. The catalytic properties were checked in the heterogeneous catalytic ammoxidation of 2, 6‐dichlorotoluene to the corresponding nitrile. The catalyst samples were prepared by synthesis of the precursor compound VOHPO4 · 0.5 H2O, impregnation using various metal salt solutions and mixing with the support materials. The characterization revealed increased surface areas for all the promoted samples in comparison to the basic materials. XRD showed the formation of (VO)2P2O7 after calcinations as well as patterns of support materials (anatase, γ‐Al2O3). The formation of crystalline proportions of mixed oxides were not observed. The catalytic ammoxidation runs revealed a significant effect of the promoter metals on the catalytic properties by an increase of yield by ca. 20 % compared to bulk VPO. Almost complete conversion of 2, 6‐dichlorotoluene and 81 % yield of nitrile were observed using a 25 %VPCoO/γ‐Al2O3 catalyst.  相似文献   
5.
(Pd-Cu)/C上苯乙烯氧化羰化合成肉桂酸甲酯的研究   总被引:2,自引:0,他引:2  
在常压130℃下研究了Pd-Cu催化剂组成,反应温度,少量添加剂和原料气中O_2含量等对苯乙烯氧化羰化合成肉桂酸甲酯的影响,并对催化剂的形、相态进行表征.发现O_2有双重作用;O_2不仅使Pd-Cu之间的价态循环,而且能抑制反应过程中饱和苯丙酸甲酯的生成.指出催化反应中Pd-Cu之间的催化协同效应促进了产物的生成.初步讨论了本反应的机理.  相似文献   
6.
A new ternary Fe-based alloy catalyst FeCuP applied to decompose PH_3 was prepared with low-cost material by chemical reduction deposition method.The properties of it were characterized by XRD,ICP and SEM.Its catalytic activity on the decomposition of PH_3 and the decomposition conditions were studied.FeCuP alloy exhibits high thermal stabilities and high catalytic activity.Using it as catalyst,the decomposition temperature of phosphine decreases from over 800℃to 400-500℃.The decomposition rate of phosphine achieved 100%.  相似文献   
7.
This contribution reports ethylene and propylene polymerization behavior of a series of Ti complexes bearing a pair of phenoxy–imine chelate ligands. The bis(phenoxy–imine)Ti complexes in conjunction with methylalumoxane (MAO) can be active catalysts for the polymerization of ethylene. Unexpectedly, this C2 symmetric catalyst produces syndiotactic polypropylene. 13C NMR spectroscopy has revealed that the syndiotacticity arises from a chain-end control mechanism. Substitutions on the phenoxy–imine ligands have substantial effects on both ethylene and propylene polymerization behavior of the complexes. In particular, the steric bulk of the substituent ortho to the phenoxy–oxygen is fundamental to obtaining high activity and high molecular weight for ethylene polymerization and high syndioselectivity for the chain-end controlled propylene polymerization. The highest ethylene polymerization activity, 3240 kg/mol-cat h, exhibited by a complex having a t-butyl group ortho to the phenoxy–oxygen, represents one of the highest reported to date for Ti-based non-metallocene catalysts. Additionally, the polypropylene produced exhibits a Tm, 140 °C, and syndioselectivity, rrrr 83.7% (achieved by a complex bearing a trimethylsilyl group ortho to the phenoxy–oxygen) that are among the highest for polypropylenes produced via a chain-end control mechanism. Hence, the bis(phenoxy–imine)Ti complexes are rare examples of non-metallocene catalysts that are useful for the polymerization of not only ethylene but also propylene.  相似文献   
8.
9.
A series of hyperbranched polyacenaphthenequinones has been prepared by superelectrophilic aromatic substitution of (substituted) acenaphthenequinone and 1,3,5‐tris‐(4‐phenoxybenzoyl)benzene via a facile A2 + B3 approach. Because of the strongly increased reactivity of the second A functionality, gelation was efficiently avoided during the polymerization. The structure of the resulting polymer was characterized by NMR spectroscopy and gel permeation chromatography. Further modification of the hyperbranched polyacenaphthenequinone was explored both on the acenaphthenequinone and aromatic moieties. Moreover, the polymer modified through sulfonation was investigated as a water‐soluble acid catalyst for the degradation of biomass resources. © 2014 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2014 , 52, 2596‐2603  相似文献   
10.
Substituted bifunctional phosphorus-based ligands HX(CRR') n PR"H (or -PR" 2 ) [where X = O, S, NR', (substituted) cyclopentadienyl; n = 1, 2, 3; R, R', R" = alkyl, aryl, H] were employed as bridging ligands in the synthesis of early/late bridged transition metal complexes. Synthetic routes to the bifunctional ligands were also developed. First, mononuclear complexes, such as [TpZr(OCH 2 PPh 2 ) 3 ] (Tp = trispyrazolylborato), [Cp 2 Zr(1-O-2-PHR-C 6 H 10 )(Me)] (R = 2,4,6-Pr i 3 C 6 H 2 (Tipp)), [Cp 2 Zr(SCH 2 CH 2 PHR) 2 ] (R = Ph, Mes, Tipp), and phosphinoferrocene derivatives, were prepared. These complexes are suitable precursors for the introduction of a second metal (as in, for example, [TpZr( w -OCH 2 PPh 2 ) 3 Mo(CO) 3 ]).  相似文献   
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