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1.
贵金属负载光催化剂在丙炔光催化水解反应中的研究(Ⅲ)   总被引:16,自引:0,他引:16  
利用三种不同负载方法制备了含有不同贵金属的TiO2光催化剂,通过测试其XPS和光催化活性和选择性发现,TiO2光催化剂在丙炔和水的光催化水解反应中,由于贵金属的存在,有利于促进发生加氢反应,导致丙烯的生成量增加.Pt,Ru,Rh,Pd和Ag负载在TiO2上,在紫外线照射下(λ>270nm),Pd负载的TiO2光催化剂表现出最高的光催化活性.光催化活性和负载贵金属所处的氧化状态有密切的关系,贵金属完全被还原到0价是提高光催化活性的必要条件.  相似文献   

2.
ZnO纳米粒子的表面光电压谱和光催化性能   总被引:3,自引:0,他引:3  
采用焙烧前驱物碱式碳酸锌的方法制备了不同粒径的ZnO纳米粒子,而用粒径 最小的作为光催化剂,通过光还原过程分别得了贵金属质量分数为0.5%和0.75%的 Pd/ZnO或Ag/ZnO复合纳米粒子。利用XRD,TEM,XPS,SPS和EFISPS等测试技术对样 品进行了表征,并通过光催化氧化气相正庚烷评估了样品的光催化活性,考察了微 晶尺寸和贵金属Pd或Ag的沉积对ZnO纳米粒子表面光电压信号以及光催化活性的影 响,探讨了样品表面光电压谱与其光催化活性的关系,说明了可以通过表面光电压 谱的测试来初步地评估纳米粒子的光催化活性。结果表明:随着ZnO纳米微晶尺寸 的减小,其SPS信号强度逐渐变弱,而光催化活性逐渐升高;沉积适量的贵金属Pd 或Ag后,ZnO纳米粒子的SPS信号强度明显下降,而其光催化活性却有所升高。此外 ,对ZnO纳米粒子光催化剂的失活机理进行了分析。  相似文献   

3.
ZnO纳米粒子的表面光电压谱和光催化性能   总被引:10,自引:0,他引:10  
采用焙烧前驱物碱式碳酸锌的方法制备了不同粒径的ZnO纳米粒子,而用粒径 最小的作为光催化剂,通过光还原过程分别得了贵金属质量分数为0.5%和0.75%的 Pd/ZnO或Ag/ZnO复合纳米粒子。利用XRD,TEM,XPS,SPS和EFISPS等测试技术对样 品进行了表征,并通过光催化氧化气相正庚烷评估了样品的光催化活性,考察了微 晶尺寸和贵金属Pd或Ag的沉积对ZnO纳米粒子表面光电压信号以及光催化活性的影 响,探讨了样品表面光电压谱与其光催化活性的关系,说明了可以通过表面光电压 谱的测试来初步地评估纳米粒子的光催化活性。结果表明:随着ZnO纳米微晶尺寸 的减小,其SPS信号强度逐渐变弱,而光催化活性逐渐升高;沉积适量的贵金属Pd 或Ag后,ZnO纳米粒子的SPS信号强度明显下降,而其光催化活性却有所升高。此外 ,对ZnO纳米粒子光催化剂的失活机理进行了分析。  相似文献   

4.
Pd/ZnO和Ag/ZnO复合纳米粒子的制备、表征及光催化活性   总被引:11,自引:0,他引:11  
 用焙烧前驱物碱式碳酸锌的方法制备了ZnO纳米粒子,采用光还原沉积贵金属的方法制备了Pd/ZnO和Ag/ZnO复合纳米粒子,并利用ICP,XRD,TEM和XPS等测试技术对样品进行了表征,初步探讨了贵金属在ZnO纳米粒子表面形成原子簇的原因.以光催化氧化气相正庚烷为模型反应,考察了样品的光催化活性以及贵金属沉积量对催化剂活性的影响.结果表明:沉积适量的贵金属,ZnO纳米粒子光催化剂的活性大幅度提高.同时,深入探讨了表面沉积贵金属的ZnO纳米粒子光催化剂活性有所提高的内在原因.  相似文献   

5.
用焙烧前驱物碱式碳酸锌的方法制备了ZnO纳米粒子,采用光还原沉积贵金属的方法分别得到了质量分数为0.5%的Pd/ZnO和Ag/ZnO复合纳米粒子,并利用XRD、TEM、XPS和SPS等测试技术对样品进行表征.初步探讨了贵金属在ZnO纳米粒子表面形成原子簇的原因及沉积贵金属对ZnO纳米粒子表面光电压信号的影响.以光催化氧化气相正庚烷为模型反应,考察了沉积贵金属对ZnO纳米粒子光催化活性的影响,并探讨了光催化活性有所提高的内在原因.结果表明, ZnO纳米粒子沉积贵金属后,其表面光电压信号明显下降,而光催化活性却大大地提高,这说明可以通过表面光电压谱的测试来初步的评估纳米粒子的光催化活性,即粒子的表面光电压信号越弱,其光催化活性越高.  相似文献   

6.
利用调控ZnO纳米棒阵列的疏水、亲水性,由电化学方法制备了Pt纳米花/ZnO(PtNF/ZnO)复合阵列.该复合阵列排列规则、尺寸均一、方向一致.每一根ZnO纳米棒的顶端都覆盖着由Pt纳米颗粒构成的Pt纳米花,具有大的比表面积.与以亲水性的ZnO纳米棒制得的覆盖Pt纳米颗粒的ZnO复合阵列(PtNP/ZnO)以及单独的Pt颗粒相比,PtNF/ZnO复合阵列对甲醇氧化具有更高的电化学催化活性.  相似文献   

7.
碳纳米管 (CNT)作为制备新型催化剂载体已有广泛的研究 [1~ 8] ,例如 ,在其表面负载 Pt,Ru和Pt Ru后则具有良好的催化性能[1,2 ,6~ 8] .但在 CNT表面负载金属微粒的方法难以获得尺寸和形状均匀的纳米粒子 .因此 ,如何制备超细和均匀的纳米粒子是一项具有重要的学术意义和技术价值的工作 .我们利用微波加热的多元醇工艺合成了 XC-72碳负载铂纳米粒子的催化剂 ,并发现它对甲醇的氧化具有较高的电催化活性 [9] .本文进一步以 CNT作为载体 ,利用微波加热法快速合成了 Pt/ CNT纳米催化剂 ,并对其对甲醇电化学氧化的性能进行了初步研究 …  相似文献   

8.
用等体积浸渍法制备了一系列Ru系双贵金属催化剂(Ru-M/Zr O2,M为Rh、Ir、Pd、Au、Pt),采用程序升温表面反应(TPSR)技术研究了其催化同时去除碳颗粒和NOx的活性,并考察了含硫含水条件对其活性的影响.结果表明,Ru系双贵金属催化同时去除碳颗粒和NOx的活性受贵金属组合的影响较为明显,Ru-Rh/Zr O2、Ru-Ir/Zr O2和Ru-Pd/Zr O2对碳颗粒和NOx同时去除表现了较高的协同活性,Tpeak低于510℃,η高于35%,其协同催化路径为:Ru催化NO氧化成NO2,Rh、Pd或Ir催化NO2与碳颗粒反应,使碳颗粒迅速氧化,同时NOx迅速还原.含硫含水条件对Ru系双贵金属催化去除碳颗粒具有促进作用,对Ru系双贵金属催化去除NOx具有抑制作用.与其他双贵金属催化剂相比,Ru-Rh/Zr O2和Ru-Ir/Zr O2表现了较强的抗硫抗水性能,而Ru-Pd/Zr O2的抗硫抗水性能最差.  相似文献   

9.
研究了以水滑石为载体原位负载贵金属纳米颗粒(Pd、Ag、Ru、Au)的方法,通过共沉淀合成甲酸根水滑石,以层间甲酸根为还原剂原位还原贵金属前驱体制得高分散水滑石(LDH)负载纳米颗粒。本方法无需载体预处理,操作方便、适用性强,阴离子前驱体(Au)和阳离子前驱体(Pd、Ag、Ru)均可顺利得到纳米颗粒。所得水滑石负载纳米颗粒系一种潜在的纳米催化剂,作为示例,Pd/LDH在Suzuki偶联反应中显示出较高催化活性。  相似文献   

10.
研究了以水滑石为载体原位负载贵金属纳米颗粒(Pd、Ag、Ru、Au)的方法,通过共沉淀合成甲酸根水滑石,以层间甲酸根为还原剂原位还原贵金属前驱体制得高分散水滑石(LDH)负载纳米颗粒。本方法无需载体预处理,操作方便、适用性强,阴离子前驱体(Au)和阳离子前驱体(Pd、Ag、Ru)均可顺利得到纳米颗粒。所得水滑石负载纳米颗粒系一种潜在的纳米催化剂,作为示例,Pd/LDH在Suzuki偶联反应中显示出较高催化活性。  相似文献   

11.
The process of using solar energy to split water to produce hydrogen assisted by an inorganic semiconductor is crucial for solving our energy crisis and environmental problems in the future. However, most semiconductor photocatalysts would not exhibit excellent photocatalytic activity without loading suitable co‐catalysts. Generally, the noble metals have been widely applied as co‐catalysts, but always agglomerate during the loading process or photocatalytic reaction. Therefore, the utilization efficiency of the noble co‐catalysts is still very low on a per metal atom basis if no obvious size effect exists, because heterogeneous catalytic reactions occur on the surface active atoms. Here, for the first time, we have synthesized isolated metal atoms (Pt, Pd, Rh, or Ru) stably by anchoring on TiO2, a model photocatalystic system, by a facile one‐step method. The isolated metal atom based photocatalysts show excellent stability for H2 evolution and can lead to a 6–13‐fold increase in photocatalytic activity over the metal clusters loaded on TiO2 by the traditional method. Furthermore, the configurations of isolated atoms as well as the originality of their unusual stability were analyzed by a collaborative work from both experiments and theoretical calculations.  相似文献   

12.
A physical synthesis of multilayered Pt/Ru nanorods with controllable bimetallic sites as methanol oxidation catalysts is reported for the first time. The novel nanorods were synthesized via the oblique angle deposition method, deposited prior to the formation of each individual noble metal layer, in a sequential fashion. It has been shown that the oblique angle deposition controls the morphology and electrochemical properties of the resultant nanostructures. Sequentially the multilayered nanorods comprising Pt and Ru segments exhibited superior electrocatalytic activity when compared to equivalent monometallic Pt nanorods with respect to methanol electrooxidation reaction in an acidic medium. Moreover, it has been established that the electrochemical process takes place at the Pt/Ru nanorods followed the bifunctional mechanism. The relative rates of reaction, recorded using chronoamperometry, show a linear relationship between the long-time current density and the number of Pt/Ru interfaces. Interestingly, the best catalyst for methanol oxidation was found to the surface of bimetallic Pt/Ru nanorods produced by the heat treatments via the so-called electronic effect. This reflects the fact that the ensemble effects of combined bifunctional and electronic effects via second elements could be expected in methanol oxidation reactions. Electrocatalytic activities correlate well with bimetallic pair sites and electronic properties analyzed by X-ray photoemission spectroscopy and X-ray absorption near-edge structure.  相似文献   

13.
Subnanocatalysts (SNCs) containing various noble metals (Cu, Ru, Rh, Pd, or Pt) with sizes of approximately 1 nm were synthesized using dendritic poly(phenylazomethine)s as a macromolecular template. These materials exhibit high catalytic performance during toluene oxidation without the use of harmful solvents or explosive oxidants, resulting in the formation of valuable organic products, including benzoic acid as the major product. In particular, Pt19 SNC with a narrow particle size distribution exhibits extraordinary catalytic activity, with a turnover frequency of 3238 atom?1 h?1, which is 1700 times greater than that obtained by commercial Pt/C catalysts.  相似文献   

14.
Pt,Pd助剂对Ni基催化剂中Ni的分散度及抗积碳性能的影响   总被引:8,自引:3,他引:5  
研究了添加少量贵金属(Pt,Pd)的Ni/Al2O3催化剂对甲烷水蒸汽重整反应抗积碳能力和催化性能的影响.催化活性实验表明,添加少量Pt的样品显著提高了Ni/Al2O3催化剂的活性,稳定性,抗积碳和抗氧化能力,而添加Pd的样品对Ni/Al2O3催化剂的催化性能提高并不明显.利用氢气程序升温还原(H2-TPR),X射线晶体衍射(XRD),热重-差热分析(TG-DTA)等手段对反应前后的催化剂进行了表征,研究发现在Ni-Pt/Al2O3催化剂中Ni与Pt之间存在较强的相互作用力,在主要由Ni覆盖的表面形成了Ni-Pt双金属簇,提高了Ni的分散度,在催化剂的表面易于形成较小的Ni颗粒,抑制了Ni的烧结,改善了Ni基催化剂的抗积碳能力;贵金属Pt通过H2的溢流效应促进了Ni的还原,抑制了催化剂的氧化.而在Ni-Pd/Al2O3中,Ni和Pd存在着一定的偏析效应,不能有效的形成Ni-Pd双金属簇,在还原过程中分别被还原.  相似文献   

15.
质子交换膜燃料电池Pd修饰Pt/C催化剂的电催化性能   总被引:2,自引:1,他引:2  
吕海峰  程年才  木士春  潘牧 《化学学报》2009,67(14):1680-1684
通过对Pt催化剂表面进行Pd修饰提高质子交换膜燃料电池阴极催化剂的氧还原反应(ORR)活性. 采用乙二醇还原法制备了不同比例的Pd修饰Pt/C催化剂. 透射电镜(TEM)和X射线衍射(XRD)测试结果表明, 制备的催化剂贵金属颗粒粒径主要分布在1.75~2.50 nm之间, 并均匀地分散在碳载体表面. 循环伏安方法(CV)研究表明Pd修饰Pt/C催化剂的电化学活性面积低于传统的Pt/C催化剂. 但通过旋转圆盘电极(RDE)测试研究发现, 制备的催化剂具有比传统Pt/C催化剂高的ORR活性.  相似文献   

16.
This communication presents our recent results that the activity of photocatalytic H2 production can be significantly enhanced when a small amount of MoS2 is loaded on CdS as cocatalyst. The MoS2/CdS catalysts show high rate of H2 evolution from photocatalytic re-forming of lactic acid under visible light irradiation. The rate of H2 evolution on CdS is increased by up to 36 times when loaded with only 0.2 wt % of MoS2, and the activity of MoS2/CdS is even higher than those of the CdS photocatalysts loaded with different noble metals, such as Pt, Ru, Rh, Pd, and Au. The junction formed between MoS2 and CdS and the excellent H2 activation property of MoS2 are supposed to be responsible for the enhanced photocatalytic activity of MoS2/CdS.  相似文献   

17.
How to extend ultraviolet photocatalysts to the visible‐light region is a key challenge for solar‐driven photocatalysis. Herein, we show that ultraviolet ZnO photocatalysts can present high visible‐light photocatalytic activity when combined with CuO quantum dots (QDs; <3 nm). Theoretical analysis demonstrates that the quantum size effect plays a key role in the photoactivity of the CuO/ZnO composite. For CuO QDs smaller than 3 nm, the separated charges could transfer from CuO QDs to the conduction bands of ZnO due to quantum splitting of the CuO energy level and phonon compensation for the difference in the conduction band minimum of CuO and ZnO; however, this process would not occur with the disappearance of the quantum size effect. Further structural analysis demonstrates that interfacial charge separation and transfer between ZnO and CuO dominate the photocatalytic processes instead of a single CuO or ZnO surface. Compared with ZnO? noble metal structures (e.g., ZnO? Ag or ZnO? Au), these ZnO? CuO QD composites present wider absorption bands, higher visible photocatalytic efficiencies, and lower costs.  相似文献   

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