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1.
吴磊 《分子催化》2013,27(2):138-144
采用浸渍法制备了混合氧化物NaPMoO/Ti-MCM-41(n)(n为载体钛硅比)催化剂,考察其在以H2O2为氧化剂的环己烯环氧化反应中的催化性能,并用XRD、UV-Vis、IR、N2吸附-脱附、XPS及H2-TPR等测试技术对催化剂进行表征.结果表明:NPMO/Ti-MCM-41(0.2)的环己烯转化率、环氧环己烷选择性及H2O2利用率达到最高,分别为27.50%、75.31%和78.31%.这归因于负载型NPMO中的MoO3还原能力得到提高;载体Ti-MCM-41中Ti物种进一步促进MoO3的还原能力,从而有利于其与双氧水形成过氧化物活性中间体,使催化性能和双氧水的利用率得到提高.其中负载后的载体Ti-MCM-41孔结构遭到破坏,形成无定形TiOx物种.  相似文献   

2.
 分别以Na2WO4和H2WO4为钨源,以正硅酸四乙酯为硅源直接合成了W-SBA-15介孔分子筛样品,并用小角XRD,N2吸附,FT-IR,UV-Vis,SEM和XRF等手段对合成的分子筛进行了表征. 结果表明,只用P123(EO20PO70EO20)为模板剂时,分子筛中钨的含量只是投料量的一半; 而以P123和十六烷基三甲基溴化铵为混合模板剂时,钨能有效地掺杂到SBA-15分子筛中. 当原料中的Si/W摩尔比为40时,W-SBA-15分子筛中的钨物种以高度分散状态存在,且以H2WO4为钨源比以Na2WO4为钨源更易将钨掺杂到SBA-15介孔分子筛中. W-SBA-15分子筛催化剂对环己烯环氧化反应具有较高的催化活性.  相似文献   

3.
对环氧化反应具有高催化活性的钛硅介孔分子筛的制备   总被引:7,自引:0,他引:7  
任瑜  钱林平  岳斌  贺鹤勇 《催化学报》2003,24(12):947-950
 使用短链二元羧酸(包括草酸、戊二酸、柠檬酸和酒石酸)为模板剂,采用溶胶-凝胶法合成了具有大比表面积,孔径在3~7nm的钛硅介孔分子筛.EDX和紫外可见漫反射光谱的研究结果表明,所合成的钛硅介孔分子筛中钛的分布均匀,钛物种以孤立态四面体构型为主.本方法所合成的钛硅介孔分子筛对环己烯环氧化反应具有很高的催化活性和选择性.  相似文献   

4.
三维有序介孔二氧化锰制备及其甲醛催化氧化性能   总被引:2,自引:0,他引:2  
空气中的甲醛主要来源于化工、建材、涂料、装潢材料以及机动车尾气.甲醛具有光化学活性,对人体具有致癌致畸作用.高浓度甲醛对人体健康和空气环境危害极大,室内低浓度甲醛对人体也有很大伤害.因此,消除室内、机动车尾气以及工业生产过程中的甲醛非常必要.目前,去除甲醛的方法主要有吸附法、光催化法和催化燃烧法.其中,催化燃烧法具有去除效率高、起燃温度低、适用范围广、设备操作简单以及无二次污染等优点,因而非常适用于去除高浓度和低浓度甲醛.该方法的核心是催化剂的制备和筛选.近年来,用于甲醛催化燃烧的催化剂主要是负载型贵金属和金属氧化物.由于贵金属催化剂成本较高,所以金属氧化物催化剂备受关注.MnO2种类繁多,既包括人工合成的棒状、线状、管状、球状和孔状等形貌,还包括自然界存在的α,β,γ和δ等类型.其中,介孔MnO2因具有较大的比表面积和特殊的孔道而应用于乙醇、甲苯、苯等挥发性有机物的催化氧化反应.目前,尚未见三维(3D)有序介孔MnO2催化氧化甲醛的报道.本文以合成的3D有序介孔KIT-6分子筛为硬模板剂,采用纳米浇筑法制备出3D有序介孔MnO2材料.为了比较,采用水热法合成了α-MnO2和p-MnO2纳米棒.采用X射线粉末衍射、N2吸附-脱附、透射电子显微镜和X射线能谱(XPS)等方法对催化剂进行了表征.在微型固定床石英管反应器上评价了催化剂催化甲醛氧化活性,采用气相色谱(GC)联接热导检测器(TCD)和质谱检测器(MSD)检测产物和反应物的含量.表征结果表明,3D-MnO2复制了KIT-6硬模板的三维有序立方对称介孔结构(ia3d),且具有金红石型β-MnO2晶相,属软锰矿,具有较大的比表面积和双孔分布介孔结构,最大孔径分别位于3.7和11.4nm处.3D-MnO2样品具有清晰的孔道结构,而α-MnO2和p-MnO2纳米棒为无孔的一维纳米单晶材料.另外,3D-MnO2表面暴露了较多的(110)晶面,有利于增加表面Mn4+离子.XPS结果证实3D-MnO2表面存在较多的Mn4+离子,这些Mn4+离子为甲醛催化反应提供了丰富的活性位,有利于提高甲醛氧化活性.评价结果表明,3D-MnO2具有良好的低温催化性能,于130℃即可将甲醛完全转化成CO2和H2O;而在同样条件下,α-MnO2纳米棒和β-MnO2纳米棒分别在140和180℃才能完全转化甲醛.3D-MnO2具有良好的甲醛催化性能主要归因于特殊的介孔结构、较大的比表面积和较多的表面Mn4+离子.  相似文献   

5.
溴过氧化物酶催化环己烯环氧化反应   总被引:1,自引:0,他引:1  
于瑶  靳艳  吴佩春  张卫 《催化学报》2007,28(10):915-918
研究了分离自珊瑚藻(Corallina officinalis)的溴过氧化物酶在水-有机两相体系中催化环己烯环氧化的反应.考察了氧化剂种类与添加方式、pH、反应温度、酶浓度及KBr浓度等条件对环氧化反应的影响.最佳反应条件为:反应温度55℃,在含有50mmol/LKBr和32U/ml溴过氧化物酶的pH6.0的Tris-HCl缓冲液中,每隔10min补加50μl的2.29mol/LH2O2.在此反应条件下,环氧环己烷的收率达到41.5%,选择性为82.2%.  相似文献   

6.
采用溶胶−凝胶技术并结合蒸发诱导自组装工艺, 以三嵌段共聚物EO20PO70EO20 (P123)为模板剂, 使用浸渍提拉法制备了有序介孔氧化硅薄膜, 并使用不同的表面修饰剂对薄膜进行表面处理, 制备了疏水性有序介孔氧化硅薄膜. 利用FT-IR、小角XRD、HRTEM分别表征薄膜的化学物种和孔结构, 探讨了热处理温度和老化时间对薄膜介孔结构的影响, 通过接触角测试研究薄膜的疏水性能, 考察了修饰剂种类、修饰浓度和修饰时间对薄膜疏水性的影响, 结果表明所制备的薄膜为高度有序的介孔氧化硅薄膜, 孔径大小约为8 nm|表面修饰对薄膜的有序性有一定影响, 经三甲基氯硅烷(TMCS)和g-氨丙基三乙氧基硅烷(KH-550)修饰后的薄膜具有很好的疏水性能, 接触角分别为112°和96°|修饰后薄膜的水汽稳定性良好, 仍能保持有序介孔结构, 孔径达7.5 nm, 接触角达93°.  相似文献   

7.
武光  王安杰  李翔  王瑶  胡永康 《催化学报》2010,31(9):1139-1144
 在不添加有机模板剂的情况下, 通过尿素缓慢分解调节局部 pH 值, 水热法合成了具有均一孔道直径的磷酸镍纳米管材料 (NiPO-NTs). 采用 N2 吸附-脱附、吡啶吸附红外光谱和氨程序升温脱附对材料进行了表征, 并将其用于催化 H2O2 氧化的环己烯反应中, 考察了反应条件对环氧化反应性能的影响. 结果表明, NiPO-NTs 具有狭窄的孔径分布, 比表面积为 96.6 m2/g, 其表面酸中心以弱 Lewis 酸为主. 该反应中以乙腈为溶剂较为适宜, 高温和高 H2O2/环己烯摩尔比有利于提高环己烯转化率; 而低温和高 H2O2/环己烯摩尔比有利于提高环氧环己烷选择性. 在 60 oC, H2O2/环己烯摩尔比为 3, 反应 6 h 时, 环己烯转化率可达 50.6%, 环氧环己烷选择性为 72.1%.  相似文献   

8.
采用共合成法制备了一系列不同硅氨基含量的介孔氧化硅SBA-15,在其孔道中引入Keggin型钨磷酸,且其含量随硅氨基含量的增加而增加. 考察了不同处理温度下杂多酸的热稳定性,发现焙烧后钨物种能在SBA-15孔道内高度分散. 以H2O2为氧化剂,研究了该催化剂在环己烯环氧化反应中的催化活性,考察了杂多酸负载量和焙烧温度对催化活性的影响. 结果表明,400 C处理后的钨磷酸催化剂具有高的反应活性和重复使用性能.  相似文献   

9.
以Na2WO4为催化剂,H2O2(30wt.%)为氧化剂,考察了环己烯合成己二酸过程中反应条件的影响。采用单因素实验确定最佳的反应条件:反应体系的物料比为Na2WO4·2H2O∶H3PO4∶H2O2∶C6H10=5∶20∶400∶100(mmol比),Na2WO4与H2O2加热回流温度为60℃,加热回流时间为30 min,反应温度为102℃,反应时间为2 h,此时己二酸的产率最高为63%。采用正交实验法确定影响己二酸产率的三个主要因素顺序为:反应温度Na2WO4与H2O2加热回流时间Na2WO4与H2O2加热回流温度。  相似文献   

10.
制备了有序介孔氮掺杂碳负载三氧化铁,有效降低了氧还原的过电势。通过扫描电子显微镜、透射电子显微镜、氮气吸附-脱附测试、粉末X射线衍射、X射线光电子能谱、拉曼光谱等技术表征了所制备的催化剂的物理化学性质。此外,用旋转圆盘电极测试了其在碱性条件下对氧还原反应的催化活性和选择性。实验结果表明:氮气热解后铁以三氧化二铁的形式负载于有序介孔氮掺杂碳中,其比表面积达到755 cm^2·g^-1。拉曼和X射线光电子能谱结果表明,加入铁前驱体后所制备的催化剂石墨化程度有所提升、阻抗降低、导电性增加。在碱性条件下,Fe2O3@NC催化剂呈现出4电子氧还原反应,其起始电位(-0.01 V vs Ag/AgCl)和半波电位(-0.13 V vs Ag/AgCl)与商用20%Pt/C相当。此外,该催化剂具有较好的抗甲醇性能且其恒电压稳定性优于商用Pt/C。Fe2O3@NC催化剂用于锌-空电池放电测试,其放电功率可以达到88 mW·cm^-2,是商用Pt/C的1.29倍。  相似文献   

11.
In this work, three organosilica precursors functionalized with carbamate moieties were synthesized by condensing of 3‐isocyanatopropyltriethoxysilane and coupling regents of either hydroquinone (HQ), bisphenol A (BPA), or 1,1′‐bi‐2‐naphthol (BN). These organosilica precursors were covalently bonded in the framework of periodic mesoporous organosilicas by co‐condensation and hydrolysis with tetraethyl orthosilicate (TEOS) under hydrothermal treatment. The compositions and physical properties were characterized with FTIR, XRD, thermogravimetric/differential thermal analysis (TG/DTA), 29Si NMR, 13C NMR spectroscopies, SEM, TEM, and BET technologies. These characterizations suggest that three different structures were formed as the result of different sizes and compositions of the organosilica precursors. The three mesoporous organosilicas were applied as heterogeneous catalysts in the one‐pot cascade Knoevenagel and Michael cyclopropanic reactions for the synthesis of cyclopropanic derivatives and showed excellent activity and selectivity. The highest conversion was obtained with mesoporous catalyst (MC)‐HQ owing to its ordered mesostructure, highest surface area, and weakest stereo effect of the organic linking groups compared with MC‐BAP and MC‐BN. This methodology employed cheaper and more easily obtainable raw materials as reagents over the traditional alkene additive system and these heterogeneous catalysts exhibit superior performance and recyclability than typical homogeneous organic catalysts.  相似文献   

12.
《化学:亚洲杂志》2017,12(24):3162-3171
New amino‐acid‐bridged periodic mesoporous organosilicas (PMOs) were constructed by hydrolysis and condensation reactions under acid conditions in the presence of a template. The tyrosine bissilylated organic precursor (TBOS) was first prepared through a multistep reaction by using tyrosine (a natural amino acid) as the starting material. PMOs with the tyrosine framework (Tyr‐PMOs) were constructed by simultaneously using TBOS and tetraethoxysilane as complex silicon sources in the condensation process. All the Tyr‐PMOs materials were characterized by XRD, FTIR spectroscopy, N2 adsorption–desorption, TEM, SEM, and solid‐state 29Si NMR spectroscopy to confirm the structure. The horseradish peroxidase (HRP) enzyme was first immobilized on these new Tyr‐PMOs materials. Optimal conditions for enzyme adsorption included a temperature of 40 °C, a time of 8 h, and a pH value of 7. Furthermore, the novel Tyr‐PMOs materials could store HRP for approximately 40 days and maintained the enzymatic activity, and the Tyr‐PMOs–10 % HRP with the best immobilization effect could be reused at least eight times.  相似文献   

13.
14.
刘成  谭蓉  孙文庆  银董红 《催化学报》2012,33(6):1032-1040
采用溶胶-凝胶法合成了一种桥键嵌入型双咪唑离子液体功能化介孔硅基材料(Bis-PImBr-PMO-SBA-15),然后离子交换将Keggin型磷钨酸负载于其上,制备了PW-Bis-PImBr-PMO-SBA-15催化剂,并运用X射线衍射、N2吸附-脱附、透射电子显微镜、傅里叶变换红外光谱和热重分析等手段对其进行表征.结果表明,该催化剂具有SBA-15分子筛的有序六方孔道结构,且负载后的磷钨酸阴离子仍保持其完整的Keggin结构.在以水为溶剂,30%H2O2为氧化剂的苯甲醇氧化反应中,该催化剂表现出比均相的或负载于SBA-15表面的Keggin型HPW更高的催化活性,苯甲醇转化率和苯甲醛选择性分别可达95%和94%.离子液体的咪唑阳离子可调节磷钨酸阴离子的氧化-还原性能,从而有利于提高催化剂的催化活性..  相似文献   

15.
16.
The catalytic performance of tetra‐n‐butylammonium salts of Keggin and Wells–Dawson sandwich‐type polyoxotungstates, [M4(PW9O34)2]m? and [M4(P2W15O56)2]n? (M = Mn2+, Fe3+, Co2+, Ni2+, Zn2+), in the oxidation of cyclooctene and cyclohexene with 30% hydrogen peroxide under various conditions was investigated. In comparison, Wells–Dawson sandwich‐type polyoxometalates were found to be less active than Keggin ones. In both of them, those containing Zn and Fe gave higher conversions for different oxidation conditions. These catalysts showed very good reusability in the oxidation reaction. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

17.
Magnetically nano Fe3O4 efficiently catalyzes green oxidation of primary and secondary benzylic and aliphatic alcohols to give the corresponding carbonyl products in good yields. The reactions were carried out in an aqueous medium in the presence of hydrogen peroxide as an oxidant at 50°C. In addition, the magnetically nano Fe3O4 catalyst could be reused up to four runs without any significant loss of activities. Catalyst was characterized by scanning electron microscopy, transmission electron microscopy, X-ray powder diffraction, thermogravimetric analysis, vibrating sample magnetometer, and IR.  相似文献   

18.
Tungstate salt with imidazolium framework is found to be a recoverable and heterogeneous system favouring the highly selective oxidation of primary benzylic alcohols to corresponding aldehydes with 30% H2O2 as a green oxidant under neutral aqueous reaction conditions. Furthermore, in order to demonstrate the recyclability of the catalyst, it was recovered and efficiently reused in seven succeeding reaction cycles without any significant loss. The use of green solvent, very short reaction time with excellent yields and recyclability of the catalyst make this protocol highly advantageous.  相似文献   

19.
An organic-inorganic hybrid support has been synthesized by covalently anchoring an N-octyldihydroimidazolium cation fragment onto SiO2 (denoted as 1-SiO2). This modified support was characterized by solid-state 13C, 29Si, and 31P NMR spectroscopy, IR spectroscopy, and elemental analysis. The results showed that the structure of the dihydroimidazolium skeleton is preserved on the surface of SiO2. The modified support can act as a good anion exchanger, which allows the catalytically active polyoxometalate anion [gamma-1,2-H2SiV2W10O40]4- (I) to be immobilized onto the support by a stoichiometric anion exchange (denoted as I/1-SiO2). The structure of anion I is preserved after the anion exchange, as confirmed by IR and 51V NMR spectroscopy. The catalytic performance for the oxidation of olefins and sulfides, with hydrogen peroxide (only one equivalent with respect to substrate) as the sole oxidant, was investigated with I/1-SiO2. This supported catalyst shows a high stereospecificity, diastereoselectivity, regioselectivity, and a high efficiency of hydrogen peroxide utilization for the oxidation of various olefins and sulfides without any loss of the intrinsic catalytic nature of the corresponding homogeneous analogue of I (i.e., the tetra-n-butylammonium salt of I, TBA-I), although the rates decreased to about half that with TBA-I. The oxidation can be stopped immediately by removal of the solid catalyst, and vanadium and tungsten species can hardly be found in the filtrate after removal of the catalyst. These results rule out any contribution to the observed catalysis from vanadium and tungsten species that leach into the reaction solution, which means that the observed catalysis is truly heterogeneous in nature. In addition, the catalyst is reusable for both epoxidation and sulfoxidation without any loss of catalytic performance.  相似文献   

20.
Sn[N(SO2C8F17)2]4 catalyst was shown to give an excellent yield and selectivity in a fluorous biphasic catalytic system for Baeyer-Villiger oxidation of cyclic ketones by 35% aqueous hydrogen peroxide, a green, safe and cheap oxidant. Furthermore, the catalyst was completely recovered and reused in the fluorous immobilized phase without loss of activity.  相似文献   

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