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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Rh-ions and Rh-complexes intercalated in gamma-titanium or gamma-zirconium hydrogen phosphate as highly efficient catalysts for arene hydrogenation
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Rh-ions and Rh-complexes intercalated in gamma-titanium or gamma-zirconium hydrogen phosphate as highly efficient catalysts for arene hydrogenation

机译:Rh离子和Rh络合物嵌入γ-钛或γ-锆磷酸氢盐中,作为芳烃加氢的高效催化剂

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Monocyclic arenes (C6H5X, X = H, CH3, OH, OCH3, Cl) are efficiently hydrogenated to their corresponding aliphatic hydrocarbons under relatively mild condition (T = 393 K pH(2) = 1-4 MPa) using rhodium(III) (Rh(III)) ions or Rh(III) N,N'-complexes (N,N' = 2,2'-bipyridyl, 1,10-phenanthroline) intercalated into gamma-titanium or zirconium hydrogen phosphate, (gamma-M(PO4)(H2PO4); M = Ti, Zr), acting as ionic exchange supports. The hydrogenation rate depends on the catalyst, the substrate and their molar ratio, the temperature and the hydrogen pressure.Zirconium materials charged with naked Rh-ions, gamma-Zr(PO4)(2)HxRhy, or with Rh-complexes, gamma-Zr(PO4)(2)H-x(Rh-L)(y) (L = 2,2'-bipyridyl; 1,10-phenanthroline), proved to be more active than the titanium analogous compounds gamma-Ti(PO4)(2)HxRhy and gamma-Ti(PO4)(2)H-x(Rh-L)(y). For both series of materials the M(PO4)(2)HxRhy catalysts, (M = Ti, Zr), are more active than the corresponding M(PO4)(2)H-x(Rh-L)(y) system.For the most active catalysts, gamma-Zr(PO4)(2)HxRhy and gamma-Zr(PO4)(2)H-x(Rh-L)(y), the influence of the hydrogen pressure on the turnover frequency (TOF) and the stability over recycling was studied in the benzene hydrogenation. The activity increases with the pressure and at 4 MPa of H, a TOF of 4019 h(-1), expressed as mol of benzene hydrogenated per mol of Rh per hour, was found, using a Rh/benzene molar ratio of 1/8045. The catalysts remained stable for six runs in the case of benzene hydrogenation, while with toluene, a loss of activity was observed after the third cycle. The high activity and stability of Rh-zirconium materials used for benzene hydrogenation is also evidentiated by the fact that. under a hydrogen pressure of 2 MPa with a molar ratio Rh/benzene of 1/30171, 975.3 mmol of benzene were hydrogenated in 11 h, corresponding to a turnover number (TON) of 43538 mol of benzene hydrogenated per mol of Rh. (c) 2005 Elsevier B.V. All rights reserved.
机译:使用铑(III)在相对温和的条件下(T = 393 K pH(2)= 1-4 MPa)将单环芳烃(C6H5X,X = H,CH3,OH,OCH3,Cl)有效氢化为相应的脂肪烃Rh(III))离子或Rh(III)N,N'-络合物(N,N'= 2,2'-联吡啶,1,10-菲咯啉)嵌入到γ-钛或磷酸氢锆中,(γ-M (PO4)(H2PO4); M = Ti,Zr),充当离子交换载体。加氢速率取决于催化剂,底物及其摩尔比,温度和氢气压力。锆材料中充有裸露的Rh离子,γ-Zr(PO4)(2)HxRhy或Rh络合物,γ- Zr(PO4)(2)Hx(Rh-L)(y)(L = 2,2'-联吡啶; 1,10-菲咯啉)被证明比类似钛的化合物γ-Ti(PO4)( 2)HxRhy和γ-Ti(PO4)(2)Hx(Rh-L)(y)。对于这两种材料,M(PO4)(2)HxRhy催化剂(M = Ti,Zr)比相应的M(PO4)(2)Hx(Rh-L)(y)系统更具活性。最具活性的催化剂,γ-Zr(PO4)(2)HxRhy和γ-Zr(PO4)(2)Hx(Rh-L)(y),氢压力对周转频率(TOF)的影响和稳定性在苯加氢中研究了过度循环。活性随压力增加而增加,在4 MPa的H下,使用1/8045的Rh /苯摩尔比,发现TOF为4019 h(-1),表示为每摩尔Rh Rh每小时氢化的苯摩尔mol。 。在苯加氢的情况下,催化剂在六次运行中保持稳定,而在甲苯的情况下,在第三次循环后观察到活性降低。事实也证明了用于苯加氢的Rh-锆材料的高活性和稳定性。在2 MPa的氢气压力下,Rh /苯的摩尔比为1/30171,在11小时内氢化了975.3 mmol苯,相当于每摩尔Rh氢化了43538 mol苯的营业额(TON)。 (c)2005 Elsevier B.V.保留所有权利。

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