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1.
在离子液体BMImPF6中, 用不同的钯催化剂和Lewis酸三氟甲磺酸铜Cu(OTf)2共催化苯乙烯二聚反应, 发现用Pd(OAc)2/Cu(OTf)2作催化剂, Pd/Cu物质的量之比为1~4时, 可高产率高选择性地获得苯乙烯二聚产物1,3-二苯基-1-丁烯. BMImPF6对催化剂有较好的溶解性, 可固定催化剂体系, 使催化剂有效地与产品分离. 同时, α-甲基苯乙烯的二聚反应表明, 室温下不发生反应, 提高温度有利于反应进行.  相似文献   

2.
通过化学处理法在泡沫铜基底表面生成Cu(OH)2纳米线,大大增加了基底材料的表面积和导电性.采用水热法在Cu(OH)2纳米线表面制备片状Ni-CH/Cu(OH)2前驱体,对Ni-CH/Cu(OH)2前驱体进行低温磷化得到多级结构Ni2P/Cu(OH)2催化剂.通过扫描电子显微镜(SEM)、X射线光电子能谱仪(XPS)和X射线衍射仪(XRD)对催化剂的物质结构和表面形貌进行了表征.采用线性伏安法、恒电位等技术对催化剂的电化学性能进行测试.在1.0 mol·L-1 KOH碱性溶液中,当电流密度为10 mA·cm-2时,Ni2P/Cu(OH)2的析氢反应(HER)和析氧反应(OER)过电位分别为133和333 mV,且均具有较好的稳定性.将这种多级结构Ni2P/Cu(OH)2催化剂分别用作阳极和阴极进行全解水电解,电流密度达到10 ...  相似文献   

3.
分别以某电厂失活和新鲜的烟气选择性催化还原(SCR)脱硝催化剂为研究对象,模拟测试催化剂的脱硝效率,并采用扫描电子显微镜-能量色散X射线光谱(SEM-EDX)、X荧光光谱(XRF)、X光电子能谱(XPS)、氮气吸脱附、傅里叶红外光谱(FT-IR)、X射线衍射(XRD)和热重分析(TG)等手段对催化剂的微观结构和表面形态进行表征,探讨了SCR催化剂的失活机制。结果表明,380℃下失活催化剂的脱硝效率(35.0%)和比表面积(1.05 m2/g)明显低于新鲜催化剂(88.2%,72.50 m2/g)。与新鲜催化剂相比,失活催化剂中V5+的比例由17.4%升高到32.2%,并且表面出现了大量的Al2(SO4)3。另外,SEM和XRD结果表明,失活催化剂出现了烧结。催化剂表面V价态的改变、高温烧结和表面Al2(SO4)3相的大量生成是催化剂失活的主要原因。  相似文献   

4.
商用SCR脱硝催化剂K2O中毒后再生:(NH4)2SO4溶液   总被引:1,自引:0,他引:1  
利用(NH4)2SO4溶液对K2O中毒后烟气SCR (selective catalytic reduction)脱硝商用催化剂活性进行再生。采用湿法浸渍法使催化剂表面负载不同质量K2O,前驱体为KNO3溶液。经过再生工艺处理后,在不同模拟烟气空速及氧浓度条件下均具有良好的活性。进一步利用离子色谱(IC)、N2吸附脱附分析(BET)、扫描电镜及其元素能谱分析(SEM-Maps, EDX)、红外光谱分析(FT-IR)等技术对再生前后催化剂进行表征。结果表明,再生工艺对K2O去除效果明显,有效地恢复了催化剂表面活性位V=O。此外,再生过程没有导致催化剂表面物质的流失及机械强度的降低。  相似文献   

5.
在溶剂热条件下,以2-吡啶甲醛肟(HL)为主配体,Zn(OAc)2·2H2O和NiCl2·6H2O为金属盐,合成了一个Ni2Zn2簇配合物[Ni2Zn2(L)4Cl2(CH3O)2](1),通过元素分析、红外光谱、单晶X射线衍射等对其结构进行了表征。研究了该配合物的磁性及光催化降解染料的性能,结果表明:配合物1属于正交晶系,Pna21空间群,其分子中包含2个Ni离子,2个Zn离子,4个L-配体,2个Cl-离子和2个CH3O-离子。磁性研究表明Ni…Ni离子间存在弱的反铁磁相互作用。光催化降解染料的研...  相似文献   

6.
研究了在室温离子液体以及室温离子液体/有机溶剂复合介质体系中, Rh(PPh3)3Cl, Ru(PPh3)3Cl2等催化烯烃与三乙氧基硅烷的硅氢加成反应. 实验结果表明, 在乙二醇二甲醚/离子液体1-丁基-3-甲基咪唑六氟磷酸盐(BMImBF6) (V/V=1/4)介质中, 于90 ℃下, 己烯与三乙氧基硅烷反应的转化率为100%, β加成物的选择性可达89.0%. 而用Rh(PPh3)3Cl作为反应的催化剂, 在纯离子液体BMImPF6中, 就可以高效催化烯烃与三乙氧基氢硅烷的加成反应. 过渡金属Rh(PPh3)3Cl, Ru(PPh3)3Cl2催化剂/离子液体BMImPF6催化体系, 不仅解决了产物与催化剂分离困难这一难题, 同时, 离子液体BMImPF6的存在提高了过渡金属Rh(PPh3)3Cl, Ru(PPh3)3Cl2催化硅氢加成反应的活性, 特别是β加成物的选择性. 反应结束后, 催化剂/离子液体与产物易于分离, 并且可以重复使用.  相似文献   

7.
Two fluoride sulfates,K2Mn3(SO4)3F2·4H2O(Ⅰ) and Rb2Mn3(SO4)3F2·2H2O (Ⅱ) are obtained by water solution method.Single-crystal X-ray diffraction analysis indicated that they crystallize in space groups of Cmc21.Their structures feature a pseudo-KTP structure consisting of interconnecting[Mn3(SO4)3F2(H2O)2] layers,which are further packing along the a axis with alkali metal cations balancing the charges.The structure relationships between the two compounds are discussed.Secondharmonic generation measurements manifest that Ⅰ and Ⅱ have similar second-harmonic generation responses of about 0.2 and 0.25 times that of KH2PO4.  相似文献   

8.
水热条件下,合成了一个三维配位聚合物[Ni2(BDC)2(m-bix)(H2O)3·3H2O]n(1)[BDC=对苯二甲酸,m-bix=1,3-双(咪唑基-1-甲基)-苯],并通过红外,热重和X-射线单晶衍射进行了表征。X射线衍射结果表明化合物含有类似配位环境的金属2个Ni2+离子,2个BDC2-配体,1个m-bix分子,3个配位水分子和3个游离的溶剂水分子。两个Ni2+离子分别采用八面体构型,通过桥联水分子形成双核单元,然后通过全部脱质子的BDC形成三维孔洞结构,m-bix配体通过连接两类双核金属原子形成三维框架,游离水分子存在于框架之中。有趣的是,化合物的结构是单一六节点,具有自穿插特征。而且对化合物的红外和热重性质进行了表征。  相似文献   

9.
以焙烧商用氢氧化锆(Zr(OH)4)得到的ZrO2为载体,通过沉积-沉淀法制备了ZnO-ZrO2催化剂,并在873 K下对该催化剂上CO2辅助的乙烷氧化脱氢反应(CO2-ODHE)的催化性能进行了评价。利用X射线衍射(XRD)、扫描电镜(SEM)、拉曼光谱(Raman)、高分辨透射电镜(HRTEM)、X射线光电子能谱(XPS)、CO2程序升温脱附(CO2-TPD)等技术对ZnO-ZrO2催化剂的表面物理化学性质和形貌进行了表征。结果表明,在5%ZnO-ZrO2催化剂上,ZnO掺入到了ZrO2的表面晶格之中,在催化剂表面产生了高度分散的ZnO物种和氧缺陷区域。5%ZnO-ZrO2催化剂可以选择性地剪裁乙烷C-H键,抑制C-C键的断裂,具备良好的催化性能。210μmol/(gcat·min)的C2H4形成率可以与贵金属和过渡金属碳...  相似文献   

10.
采用累托土为原料,合成铝交联累托土 (Al-PILR),然后分步浸渍负载 (NH4)2S2O8、Dy(NO3)3和 Cu(NO3)2,制成 Cu/Dy/S2O82-/Al-PILR催化剂。 考察该催化剂对 C3H6选择性还原 NO的催化性能,并且利用低角 XRD、BET、Py-IR、IR、TG和SEM等方法,研究催化剂结构与性能的关系。实验结果表明,铝交联剂能很好地撑开累托土的土层,显著增大催化剂的比表面积; S2O82-能明显增加铝交联累托土B(Brönsted)酸的酸量; Dy能进一步增加B酸的酸量,有效提高催化活性和热稳定性。因此, Cu/Dy/S2O82-/Al-PILR催化剂具有良好的催化性能, 最佳催化活性温度为300℃,NO转化率高达80.3%,在有10%水蒸气存在的情况下仍可达77.6%。  相似文献   

11.
The reaction of Pt(PPh3)n (n = 3 or 4) with [(CF3)3Ge]2Hg or (CF3)3GeHgPt(PPh3)2Ge(CF3)3 (I) gives a stable diplatinum complex [(CF3)3GePt(PPh3)2]2Hg (II). X-Ray analysis has established that compound II contains a Ge---Pt---Hg---Pt---Ge chain of C2 symmetry. Both of the Pt atoms have distorted square-planar coordinations. The bond lengths are: Pt---Hg, 2.630(2) and 2.665(2) Å; Ge---Pt, 2.410(4) and 2.407(4) Å.

Compound II reacts with dihydrogen in THF solution under mild conditions to give mercury and the hydride (CF3)3GePt(PPh3)2H. On interaction of II with R2Hg organomercurials (R = Cl, Et, GeEt3, Ge(CF3)3, Ge(C6F5)3) an unknown reaction takes place: Pt(PPh3)2 moieties migrate from the polymetallic grouping into the substrate with the formation of the corresponding RHgPt(PPh3)2R complexes or their demercuration products, R2Pt(PPh3);, (R = Cl, Et). The latter react further with complex I formed in the first step of the process to give Hg and (CF3)3GePt(PPh3)2R. The reaction schemes are discussed.  相似文献   


12.
The molecular structure of [Zr(NMe2)4]2 has been determined by an x-ray study and shown to involve a central Zr2N8 moiety involving the fusing of two trigonal bipyramidal units along a common axial-equatorial edge. The terminal Zr---NMe2 units have trigonal planar coordination about the nitrogen atoms: Zr---N = 2.050(5) and 2.104(5) Å, and Zr---N (bridge) = 2.224(3) and 2.453(4) Å for equatorial and axial bonds, respectively. The Zr---Zr distance is 3.704(1) Å as expected for a non-M---M bonding bridged compound. In tetrahydrofuran solution, Zr(NMe2)4 and LiNMe2 react irreversibly giving Zr(NMe2)6 Li2(THF)2 which has been isolated and characterized by an X-ray study. The central ZrN6 octahedral moiety is capped on two opposite faces by Li atoms which are also coordinated to an oxygen atom of a THF molecule. Pertinent distances are: Zr---N = 2.22(7) (av.), N---Li = 2.155(25) (av.) and Li---O = 1.915(10) Å.  相似文献   

13.
CdTe@Zn5(CO3)2(OH)6 composites were synthesized by a hydrothermal method. CdTe@Zn5(CO3)2(OH)6 composite nanospheres were characterized via X-ray diffraction, scanning electron microscopy, energydispersive X-ray spectroscopy, and photoluminescence (PL). The hydrothermal reaction time and the mole ratios of Zn/Te played important roles in the growth and fluorescence intensity of CdTe@Zn5(CO3)2(OH)6 composites. The composite powders showed peak PL at 578 nm at 1.6 times the intensity of powdered CdTe QDs. CdTe@Zn5(CO3)2(OH)6 exhibited a strong yellow fluorescence emission, and its preparation method was easy and economical. Therefore, CdTe@Zn5(CO3)2(OH)6 offers potential applications in biological markers and light-emitting diodes.  相似文献   

14.
The coordinating properties of the trifluoromethyl elemental compounds Me2PP(CF3)2 and Me2AsP(CF3)2 have been studied by the synthesis and spectroscopic investigations (IR, NMR, MS) of their complexes cis-M(CO)4L2 (A), [(CO)4ML]2 (B) and [(CO)5M]2L (C) (M = Cr, Mo, W). Complexes of type A with L = Me2PP(CF3)2 are obtained in good yield by reaction with M(CO)4NBD (NBD = norbornadiene), whereas with L = Me2AsP(CF3)2 the homobinuclear compounds B are formed. The attempt to prepare the cis-M(CO)4[Me2AsP(CF3)2]2 complexes by treating M(CO)4(Me2AsH)2 with P2(CF3)4 is successful only for M = W. Binuclear compounds of type B or C, in general, can be prepared by stepwise reaction of the ligands with either M(CO)4NBD or M(CO)5THF.  相似文献   

15.
An X-ray crystal structure determination for the bimetallic complex Mn2(CO)8-[P(NMe2)3]2 reveals that the P(NMe2)3 ligands are trans to the Mn---Mn bond and the Mn---Mn bond distance is relatively long, 2.946(1) Å.  相似文献   

16.
The observed difference in transition strength for (SF6)2, (SiF4)2 and (SiH4)2 IR-predissociation spectra is explained by induction effects (μ012/R126) which have to be included in the interaction Hamiltonian in addition to the dominant dipole-dipole term (μ012/R123).  相似文献   

17.
The singlet-triplet separations for the edge-sharing bioctahedral (ESBO) complex W2(μ-H)(μ-Cl)(Cl4(μ-dppm)2 · (THF)3 (II) has been studied by 31P NMR spectroscopy. The structural characterization of [W2(μ-H)2(μ-O2CC6H5)2Cl2(P(C6H5)3)2] (I) by single-crystal X-ray crystallography has allowed the comparison of the energy of the HOMOLUMO separation determined using the Fenske-Hall method for a series of ESBO complexes with two hydride bridging atoms, two chloride bridging atoms and the mixed case with a chloride and hydride bridging atom. The complex representing the mixed case, [W2(μ-H)(μ-Cl)Cl4(μ-dppm)2 · (THF)3] (II), has been synthesized and the value of −2J determined from variable-temperature 31P NMR spectroscopy.  相似文献   

18.
Geometrical isomerization of fac-Mo(CO)3L3 (L = P(OPh)3, P(OMe)3, P(OEt)3) to the mer form and that of cis-Mo(CO)4L2 (L = P(OPh)3, P(OMe)3, PPh2(OMe)) to the trans form were observed in CH2Cl2 at room temperature in the presence of a catalytic amount of Me3SiOSO2CF3 (TMSOTf). Crossover experiments suggest that a ligand dissociation is not involved in the isomerization. A catalytic cycle involving an interaction of the silicon atom in Me3Si+ with one oxygen in P(OR)3 ligands has been proposed. The first isolation and the X-ray structure analysis were attained for mer-Mo(CO)3{P(OPh)3}3 through the TSMOTf-assisted isomerization of fac-Mo(CO)3{P(OPh)3}3.  相似文献   

19.
The reaction between metallic barium and fluoroisopropanol or alcoholysis of [Ba(OPri)2] produces a pentanuclear fluoroalkoxide. Its X-ray structure determination showed its formulation to correspond to Ba55-OH)[μ3-OCH(CF3)2]42-OCH(CF3)2]4 [OCH(CF3)2](THF)4(H2O)·THF. The metallic core is based on a square pyramid encapsulating an hydroxo ligand. In addition to the barium---alkoxide bonds [2.53(3)–2.86(3) Å] neutral O-donors, four THF [2.82(2)–2.86(3) Å] and one H2O [2.79(3) Å] and secondary barium---fluorine interactions [2.99(2)–3.31(2) Å] ensure high coordination numbers, from 9 to 11 for the metal centers. Hydrogen bonding between the apical fluoroisopropoxide, the water molecule and one THF molecule, non-bonded to a metal center, accounts for the stability of the hydrate and illustrates the Lewis acidity of fluoroalkoxides. Thermal decomposition leads to BaF2.  相似文献   

20.
The reactions of (Me2AlH)3 with Me2AsNMe2, MeAs(NMe2)2, and As(NMe2)3 were investigated as a function of time at room temperature and over the temperature range −90 to 24°C by use of 1H and 13C NMR spectroscopy. (Me2AlH)3 was found to be very reactive toward the aminoarsines, even at −90°C, and no stable Me2AlH-aminoarsine adducts were observed. Instead, the initial stages of the reactions involved AS---N bond cleavage with the generation of highly reactive AlN- and AsH-bonded species. The subsequent course of each reaction and the final arsenic-containing product distribution depended upon the original AL:N stoichiometric ratio and the respective aminoarsine. When the Al:N ratio was 1:1, the reactions were straightforward for each aminoarsine. However, in every case, [Me2AlNMe2]2 was the final AlN-containing product. Independent reactions were carried out to verify many of the proposed decomposition pathways that lead to thermodynamically stable products. The results of this study are compared with those of the analogous, previously reported (Me3Al)2-aminoarsine systems. Additionally, a new synthetic route to [Me2AlAsMe2]3 has been established from the reaction of (Me2AlH)3 with Me2AsH.  相似文献   

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