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1.
1 INTRODUCTION During the past decade, a series of organic-inor- ganic hybrid compounds based on metal halide units have been prepared and studied[1]. The combination of organic and inorganic components at the mole- cular level affords us the opportunity to design new hybrid materials and modulate the properties of components[2]. As a result, some interesting proper- ties, such as non-linear optical[3], interesting magne- tic[4], efficient luminescence[2], ideal thermal and mechanical sta…  相似文献   

2.
1 INTRODUCTIONAlthough vanadium plays an increasingly recognized role as a biometal[1~4], little is known about the structure and function of vanadium compounds in living organisms. A classical and nevertheless rapidly developing field of application for oxovanadates and related compounds is their use as catalysts in polymerization and oxidation reactions[5,6], and recent interest has focused on oxovanadates as model compounds for the interaction of oxovanadates with the active sites of en…  相似文献   

3.
1 INTRODUCTION Recently, the researches on inorganic-organic hy-brid compounds represent an advanced field in mate-rial science[1]. At the molecular level, the combina-tion of two extremely different components providesan avenue to design new hybrid materials as well asthe ability to modulate properties of one or more ofthe components[2~6]. Some attractive properties, suchas efficient luminescence[2~4], ideal thermal and me-chanical stability, interesting magnetic[5], non-linearoptical[…  相似文献   

4.
1 INTRODUCTION Palladium compounds have attracted much attention as a consequence of their application in homogeneous and heterogeneous catalyses[1]. For instance, palladium compounds are the most active catalysts for the carbonylation, such as palladium-catalyzed carbonylation of nitroarenes, aryl halides, alkyne and so on[2~4]. Some dramatic results in the homogeneous catalysis of the reactions of organic compounds, particularly the successful commercial exploitation of the Wacker on…  相似文献   

5.
1 INTRODUCTION 2-Aminochromene is an important class of compounds as the main compounds of many natu- rally occurring products which can be used as cos- metics and pigments[1] and potential biodegradable agrochemicals[2~4]. Inorganic solid supports as c…  相似文献   

6.
1 INTRODUCTION Triazole nuclei appear frequently in the struc- tures of various natural products and biologically active compounds, notably thiamine (vitamin B), penicillins, antibiotics such as micrococcin[1], and many metabolic products of fungi and primitive marine animals, including 2-(aminoalky)triazole-4- carboxylic acids[2]. Numerous triazole derivatives exhibit pharmacological activity[3], e.g., 4-amino-N- (triazole-2-yl)benzenesulfonamide is a commercial drug. We report herein …  相似文献   

7.
1 INTRODUCTION Palladium (Ⅱ) coordination and organometallic compounds usually show square planar environments at the metal center[1], and have experienced an im- portant development in the past years due to their acting as intermediates in different types of catalytic reactions and numerous applications in organic synthesis[2]. Although palladium plays an increase- ingly recognized role as a biometal[3], little is known about the structure and function of palladium compounds in living …  相似文献   

8.
1 INTRODUCTION The pseudoliquid character of heteropoly compounds as catalysts is determined by their crystallographic properties. Study on the crystal structures of the heteropoly compounds could provide interesting information to enrich heteropoly acid and catalytic chemistry[1]. In the past, Zhuo Ying-Li抯 group has synthesized the carbamidine salts of 1:1 LnL(Ln=lanthanide, L=[SiW11O39]n-)[2], and Pope抯 group has reported that -SiW11O39 units are connected by lanthanide catio…  相似文献   

9.
1 INTRODUCTION Metallosupramolecular species with metal-metal interactions have been designed and synthesized due to their potential applications as functional materi- als[1]. For Ag(I) coordination compounds, short Ag(I) –Ag(I) separations have been found in many bi- and polynuclear complexes[2~4], and these short metal- metal distances have been attributed to the ligand ar- chitecture[5, 6]. Thus, the rational design of bi- and polynuclear Ag(I) complexes must recognize the in- here…  相似文献   

10.
1 INTRODUCTION 2-Aminochromene is an important class of com- pounds found as the main compounds of many naturally occurring products employed as cos- metics and pigments[1] and utilized as potential biodegradable agrochemicals[2~4]. The utility of fluoride salts as potential base in variety of syn- thetic reactions has been recognized in recent years[5, 6]. However, low solubility of fluoride salts in ordinary solvents limits their wide applications in organic syntheses. On the other ha…  相似文献   

11.
以三甲基氯硅烷为硅烷化试剂,对硅胶进行不同程度硅烷化预处理,采用浸渍法制备了其负载的Rh-Mn-Li催化剂,用于CO加氢制C2含氧化合物的反应,并运用红外光谱、N2吸附-脱附法、C含量测定、透射电镜、H2程序升温还原和程序升温表面反应等手段对载体和催化剂进行了表征。结果表明,制得的不同硅烷化程度硅胶织构性质变化不大,它们负载的催化剂上Rh平均粒径均在3nm左右,硅烷化对催化剂吸附CO的形态和Rh的还原性能的影响均很小,但随着载体硅烷化程度的提高,催化剂上Rh解离CO的能力增加,因而其活性逐渐增加,且不影响C2含氧化合物的选择性。  相似文献   

12.
Rh/L和Rh-Zn/L分子筛催化剂上乙烯的氢甲酰化反应   总被引:2,自引:0,他引:2  
Rh/L和Rh-Zn/L分子筛催化剂上乙烯的氢甲酰化反应董永治,徐奕德,刘安明,李大明,黄林(中国科学院大连化学物理研究所催化基础国家重点实验室,大连116023)关键词Rh/L分子筛催化剂,Rh-Zn/L分子筛催化剂,氢甲酰化反应,乙烯近年来,氢甲...  相似文献   

13.
在比较了分别以商业SiO2和采用Sto?ber法制备的单分散SiO2为载体的Rh-Mn-Li/SiO2催化剂催化CO加氢反应性能的基础上,进一步调变了Stober法制备SiO2时的焙烧温度,并考察了其对Rh-Mn-Li/SiO2催化CO加氢性能的影响.利用N2吸附-脱附、傅里叶变换红外(FTIR)光谱、H2程序升温还原(H2-TPR)、程序升温表面反应(TPSR)等方法对载体及催化剂的物理化学性能进行了表征.结果表明:不同温度焙烧的载体表面具有不同的Si―OH数量,从而影响金属的分散状态及Rh和Mn之间的相互作用.载体表面较多的羟基有利于Rh的分散和CO的吸附,从而增强催化剂的反应活性.载体表面适当数量的羟基能够得到适中的Rh与Mn之间的相互作用,使催化剂具有合适的CO解离能力,有利于CHx的CO插入反应,从而提高了C2含氧化合物的选择性.  相似文献   

14.
The discovery that gold catalysts could be active for CO oxidation at cryogenic temperatures has ignited much excitement in nanocatalysis. Whether the alternative Pt group metal (PGM) catalysts can exhibit such high performance is an interesting research issue. So far, no PGM catalyst shows activity for CO oxidation at cryogenic temperatures. In this work, we report a sub‐nano Rh/TiO2 catalyst that can completely convert CO at 223 K. This catalyst exhibits at least three orders of magnitude higher turnover frequency (TOF) than the best Rh‐based catalysts and comparable to the well‐known Au/TiO2 for CO oxidation. The specific size range of 0.4–0.8 nm Rh clusters is critical to the facile activation of O2 over the Rh–TiO2 interface in a form of Rh?O?O?Ti (superoxide). This superoxide is ready to react with the CO adsorbed on TiO2 sites at cryogenic temperatures.  相似文献   

15.
Rh基催化剂上CO加氢制C2含氧化物的原位红外光谱研究   总被引:5,自引:0,他引:5  
 用原位红外光谱考察了Rh-Mn-Li-Fe/SiO2和Rh/SiO2催化剂表面上CO的吸附态及CO加氢反应过程中吸附物种的变化. 结果表明,CO在Rh/SiO2催化剂上仅有线式吸附态存在,而CO在Rh-Mn-Li-Fe/SiO2催化剂上既有线式吸附态存在,又有孪生吸附态存在. 这说明Rh-Mn-Li-Fe/SiO2催化剂中Rh的分散度较高. 经CO加氢反应(3.0 MPa,593 K)后,在Rh-Mn-Li-Fe/SiO2催化剂上可观测到C2含氧化物前驱物种的吸收谱带,而在Rh/SiO2催化剂上未观测到相应的谱带; CO在这两种催化剂上主要以线式吸附态存在,孪生吸附态基本消失. 结合催化剂对CO加氢的催化性能,可以认为线式吸附的CO对生成C2含氧化物有贡献. Rh-Mn-Li-Fe/SiO2催化剂的高活性是由于助剂的存在削弱了其表面吸附CO的 C-O键,促进了CO的活化,从而有利于C2含氧化物前驱物的生成.  相似文献   

16.
应用CO和NO吸附态原位红外光谱方法研究了还原态Rh2/SiO2,Rh2-V/SiO2催化剂上的活性中心铑的状态和助剂钒的作用. Rh2催化剂用Rh2(CO)4Cl2化合物制备. 在还原Rh2/SiO2催化剂上,CO吸附出现四个红外吸收峰:2085,2028cm-1(孪生态吸附RhⅠ(CO)2),2060cm-1(线式吸附RhⅡCO),1867cm-1(桥式吸附RhⅢ2CO).在还原Rh2-V/SiO2催化剂上,CO在RhⅡ和RhⅢ中心上的吸附峰大大减弱,可以解释为Rh°向钒离子转移电子生成了带正电荷的铑中心(Rhδ+);同时RhⅠ(CO)2键能增加,降低了孪生CO被NO置换的程度。  相似文献   

17.
 用红外光谱法考察了Rh-Mn-Li-Ti/SiO2催化剂在CO加氢反应过程中表面吸附物种随压力、温度和H2/CO比的改变而变化的规律. 结果表明,高压有利于提高催化剂表面吸附的CO浓度和活性,高温有利于CO解离; 而高温、高压条件不但促进了CO吸附,而且提高并平衡了CO的解离和插入之间的相对活性,促进了C2含氧化合物的生成. H2/CO比的增大有利于CO在催化剂表面的吸附,从而促进了CO插入,尤其是CO的解离和加氢活性,但是过高的H2/CO比将导致过高的CO解离和加氢活性,引起CO插入活性的削弱而最终导致C2含氧化合物生成活性的下降. 同时,考察了助剂(Mn, Li和Ti)对Rh基催化剂表面吸附物种的影响. 结果表明,助剂的加入可提高C2含氧化合物的生成活性.  相似文献   

18.
利用CO和NO作为双探针分子对Rh2Co2/Al2O3的吸附中心类型和吸附性能进行了详细的研究。结果表明Rh2Co2/Al2O3上存在Rh上的孪生和桥式CO吸附中心以及Co上的线式CO吸附中心。其中Rh上的孪生和桥式CO吸附中心对CO和NO的吸附性能与Rh4/Al2O3上的孪生和桥式CO中心相似。Co上的线式CO吸附中心以预吸附的CO能被NO取代, 预吸附的NO不能被CO取代而区别于Rh4/Al2O3上的Rh的线式CO吸附中心; 又以既能吸附CO又能吸附NO而不同于Co2/Al2O3和Rh+Co/Al2O3上的Co中心。与母体簇的结构相关联, 表明H2还原后的Rh2Co2/Al2O3上Rh2Co2(CO)12簇结构仍保持, 且Rh-Co相互作用强。  相似文献   

19.
 采用一氧化碳程序升温脱附(CO-TPD)和吸附的一氧化碳加氢程序升温表面反应(TPSR)考察了Fe助剂对Rh基催化剂上CO的脱附行为及吸附CO的加氢行为的影响.CO-TPD实验表明,在Rh/SiO2催化剂上CO有三个脱附峰.在Rh-Mn-Li/SiO2中加入0.05%Fe后,高温脱附CO比Rh/SiO2催化剂上相应的CO量大.增加Fe的负载量,CO的脱附量减少.TPSR实验中,CO加氢反应的主要产物是甲烷.不同组分的催化剂上甲烷的生成温度有如下顺序:Rh/SiO2(482K)<Rh-Mn-Li/SiO2(489K)<Rh-Fe/SiO2(494K)<Rh-Mn-Li-Fe/SiO2(501K).甲烷峰的产生伴随着CO(s)高温脱附峰的消失,说明甲烷是由强吸附的CO加氢生成的.  相似文献   

20.
本文用XPS和XRD考察了由Rh_4(CO)_(12)出发制得的Rh/V_2O_5和Rh/TiO_2两种催化剂的金属载体强相互作用的差别。实验结果表明,1)高温H_2还原的Rh/TiO_2催化剂,经氧处理后即能恢复吸H_2能力。Rh/V_2O_5催化剂在较低温度(473K)H_2还原时Rh就进入SMSI状态,吸H_2能力被完全抑制,373K氧处理并不能使之恢复,吸H_2性质表现出不可逆性。2)与Rh/TiO_2催化剂的TiO_2相比,Rt/V_2O_5催化剂的V_2O_5更易还原,Rh对V_2O_5的还原有明显的促进作用。3)担载在TiO_2上的Rh比在V_2O_5上更易还原。4)还原后,催化剂表层的Rh/V、RH/Ti均有较大幅度的降低。用氧空位模型能较好地说明Rh/TiO_2催化剂的实验结果,而Rh/V_2O_5催化剂的实验结果适于用钒氧化物覆盖模型解释。  相似文献   

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