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1.
通过热分解法制备Cu模型催化剂,然后经浸渍制备ZrO2/Cu催化剂,采用SEM、XPS考察了催化剂表面形态和组成,并采用in-situ Raman考察了催化剂在还原和吸附CO和水的过程中随时间的变化。结果表明,还原前Cu催化剂表面主要存在CuO物种,而在ZrO2/Cu表面,除了CuO物种,还存在着大量的表面羟基物种。ZrO2/Cu相对Cu更加容易还原为Cu0,同时,ZrO2在催化剂表面聚集形成絮状态,而Cu催化剂还原后主要形成Cu2O物种。Cu催化剂表面吸附CO后,除了形成Cu-CO外,Cu2O物种均会迅速消失形成CO2。Cu催化剂对水的作用比较弱,但是ZrO2/Cu催化剂和水作用较强,并且通过Cu-OH中间物形成Cu2O物种。  相似文献   

2.
Cuprous oxide(Cu2O),as an important p-type semiconductor,has been widely investigated due to its high electron transmission and facile preparation.However,the electrode made of only Cu2O has been rarely investigated.In order to demonstrate the possibility that material Cu2O can be applied to the electrode of p-type dye sensitized solar cells(DSSCs),the photo-electrodes made of prepared Cu2O powder and commercial Cu2O particles have been fabricated.The results show that the electrode based on as-prepared Cu2O(Cu2O-2) powder exhibits higher performance than that based on commercial Cu2O(Cu2O-1) particle.The device based on Cu2O-2 electrode reaches into an open-circuit voltage of 0.71 V,a short-circuit current density of 1.3 mA/cm^2,a fill factor(FF) of 46%,and a conversion efficiency of 0.42% measured under AM 1.5G(100 mW/cm^2) illumination.The enhancement performance of Cu2O-2 is attributed to the high dye adsorption of Cu2O-2 compared with that of Cu2O-1.To the best of our knowledge,this is the highest conversion efficiency value reported for solar cells based on Cu2O-DSSC.This work provides that Cu2O is also a candidate for constructing the electrode of p-type dye sensitized solar cells.  相似文献   

3.
将醋酸铜热解制备的Cu2O/AC(活性炭)催化剂,在氧化(O2/N2)和还原(H2/N2、CO/N2)气氛下进行预处理。350 ℃下预处理4 h,氧化气氛中Cu2O完全被氧化为CuO,还原气氛中Cu2O被还原为单质铜。经CO/N2预处理的催化剂表面Cu0分散性好,催化活性显著升高。在常压固定床微型反应装置上测试,在140 ℃的反应温度下,碳酸二甲酯的时空收率和选择性分别达到了261.9 mg/(g·h)和74.7%。反应后,还原气氛(H2/N2、CO/N2)预处理的催化剂与Cu2O/AC催化剂中铜物种价态组成趋于一致,催化活性亦趋于一致。关联反应前后催化剂表面铜物种的变化和催化活性的差异,可以认为Cu0具有较高的初始催化活性,Cu2O活性和价态均较为稳定,CuO活性较低。  相似文献   

4.
以CuSO4.5H2O和MnSO4.H2O为原料,KOH和NaOH为沉淀剂制备了铜锰复合氧化物,考察了其变换反应催化性能,利用XRD、低温氮气吸附法、TG、H2-TPR等对所合成样品进行了表征。以KOH和NaOH为沉淀剂所得沉淀终产物的物相组成和织构明显不同,分别为层状结构碱式硫酸铜Cu4SO4(OH)6.H2O及无定形锰氧化物和Cu2+1O和Mn3O4混合物。两种物相组成和织构完全不同的沉淀终产物焙烧后都生成Cu1.5Mn1.5O4固熔体,在变换反应条件下均转化为Cu和MnO,但其催化性能却有明显差异。以NaOH为沉淀剂,得到以Cu2+1O和Mn3O4复合体为主的沉淀终产物,焙烧及还原后保持了较高的织构稳定性,提高了样品的活性和热稳定性。而以KOH为沉淀剂得到以层状结构碱式硫酸铜Cu4SO4(OH)6.H2O和无定形锰氧化物为主的沉淀终产物,在焙烧过程发生的演变极其复杂,削弱了铜锰组分协同效应,造成其活性和热稳定性极差。研究结果表明,NaOH作沉淀剂所制备样品的织构稳定性、催化活性显著高于以KOH作沉淀剂所制备样品,且热稳定性良好。  相似文献   

5.
采用第一性原理密度泛函计算方法和周期性平板模型系统研究了放射性碘分子在Cu2O三个低指数表面的吸附行为。通过计算若干平衡吸附构型的结构参数和吸附能评估了不同特征吸附位的作用。构型优化计算表明所选晶面存在适度的结构弛豫。计算结果表明,与Cu2O(110)表面相比,Cu2O(100)和(111)晶面表现出更高的碘分子吸附反应活性。其中,表面氧原子位(OS)和配位未饱和铜原子位(CuCUS)分别为Cu2O(100)和(111)晶面的能量最优吸附位点。此外,针对几种典型吸附结构计算分析了其电子结构信息,以进一步阐明吸附体系之间的相互作用机理。  相似文献   

6.
介绍一个综合化学实验——Cu2O微纳晶可控合成及其光催化性能研究。采用简单配合物作为前驱物,在水热条件下通过调节反应条件,合成多种形貌的Cu2O微纳晶体,并对所得的不同产品结构、形貌和光学性质进行表征,对其光催化能力作对比性研究。  相似文献   

7.
采用水热合成法制备了正八面体Cu2O/Cu修饰的多孔Ni(NF)自支撑电极(Cu2O/Cu-NF),并对其进行了形貌和结构表征。 在三电极体系下,在碱性介质中以循环伏安法和恒电位安培法测试其对葡萄糖催化氧化性能。 结果表明,150 ℃水热法制备的自支撑电极对葡萄糖的电催化氧化活性最强。 响应电流与葡萄糖浓度在3.7×10-3~1.1 mmol/L和1.4~5.0 mmol/L范围内呈线性相关,响应灵敏度分别是6929和706.1 μA/(mmol·L-1·cm2),且具有良好的选择性和稳定性,对无酶葡萄糖传感器的发展有重要意义。  相似文献   

8.
电催化还原二氧化碳制备乙烯是备受关注的热点问题,高效催化剂的制备是决定乙烯产率的关键因素。本文在1-辛基-3-甲基咪唑氯的水溶液(OmimCl : H2O = 1 : 5,体积比)中通过电剥离石墨棒制备了1-辛基-3-甲基咪唑功能化石墨片(ILGS),在水溶液中负载氧化亚铜后得到氧化亚铜/1-辛基-3-甲基咪唑功能化石墨片复合材料(Cu2O/ILGS),通过透射电镜、X射线光电子能谱、拉曼光谱和X射线衍射对其组成和结构进行了系统研究,发现ILGS由多层石墨烯组成,表面富含缺陷。这些缺陷被1-辛基-3-甲基咪唑通过共价键修饰,形成类似鸟巢状的微结构,平均直径5 nm的Cu2O纳米颗粒在石墨片表面均匀分散。在0.1 mol∙L−1碳酸氢钾水溶液中,研究了Cu2O/ILGS在不同电压下催化CO2电还原的性能。结果表明,Cu2O是主要活性中心并在CO2还原过程中被逐渐还原成铜,导致产物的法拉第效率随着反应时间而变,在−1.3 V (vs RHE)电压下,乙烯的法拉第效率最高达到14.8%,其性能归因于Cu2O/ILGS复合材料中的鸟巢状微结构对Cu2O纳米颗粒的稳定作用。  相似文献   

9.
The synthesis of nanostructured Cu2O was conducted in a non-aqueous solution via polyol method at a temperature of 130℃.It was found that the formation of Cu2O nanobelts was heavily dependent on the presence of surfactant cetyltrimethylammonium bromide(CTAB).Cu2O nanobelts with 100-400 nm in width and several micrometers in length were only observed when CTAB was used,whereas in other cases where CTAB was absent or CTAB was replaced with polyvinylpyrrolidone(PVP K-30),only spherical or cube-like particles were formed.The formation mechanism of Cu2O nanobelts was discussed.  相似文献   

10.
Cu2O/nitrogen-doped grapheme(NG) nanocomposite material was prepared via a facile one step chemical reduction and characterized by means of X-ray diffraction(XRD) and scanning electron microscopy(SEM). A new electrochemical sensor was then fabricated by coating Cu2O/nitrogen-doped graphene nanocomposite with Nafion on glassy carbon electrode(Cu2O/NG/Nafion/GCE). The electrochemical response of this modified electrode toward ofloxacin was examined by cyclic voltammetry. The results indicate that Cu2O/NG/Nafion composite-modified electrode exhibits higher catalytic activity in the electrochemical oxidation of ofloxacin compared with glassy carbon electrode(GCE), Cu2O/Nafion modified electrode(Cu2O/Nafion/GCE), and N-doped graphene/Nafion modified electrode(NG/Nafion/GCE). Under optimal conditions, the peak current was found to be linearly proportional to the concentration of ofloxacin in the 0.5-27.5 μmol/L and 27.5-280 μmol/L ranges with a lower detection limit of 0.34 μmol/L, higher sensitivity of 39.32 μA·L·mmol-1 and a shorter reaction time of less than 2 s. In addition, Nafion can enhance the stability of the modified electrode and prevent some negative species. Thus the modified electrode exhibits good selectivity and a long working life. The Cu2O/NG/Nafion composite modified electrode shows promising application in electrochemical sensors, biosensors, and other related fields because of its excellent properties.  相似文献   

11.
Herein, we prepared four samples, namely gold/poly(sodium-p-styrenesulfonate) (Au/PSS), gold/silicon dioxide (Au/SiO2), gold/titanium dioxide (Au/TiO2), and gold/cuprous oxide (Au/Cu2O) core/shell nanocomposites, to investigate how the surrounding medium affects the ultrafast plasmon dynamics of Au nanoparticles (NPs). We recorded femtosecond transient absorption spectra of Au NPs in Au/PSS, Au/SiO2, Au/TiO2, and Au/Cu2O core/shell nanocomposites at various time delays. We found that the spectral features in the femtosecond transient absorption spectra of Au NPs in Au/TiO2 and Au/Cu2O core/shell nanocomposites were dramatically different from those of Au NPs in Au/PSS and Au/SiO2 core/shell nanocomposites. A comprehensive analysis of the ultrafast plasmon dynamics of Au NPs in the core/shell nanocomposites revealed that following excitation of the resonance plasmon band of Au NPs, the exited electrons could be efficiently transferred into the conduction bands of TiO2 and Cu2O in Au/TiO2 and Au/Cu2O core/shell nanocomposites.  相似文献   

12.
In this paper, CuO, CuO/Cu2O, Cu2O, Cu2O/Cu and Cu microcrystals were synthesized via a hydrothermal method by mixing Cu(NO3)2·3H2O and NaOH together in the presence of an ionic liquid 1-butyl-3-methylimidazolium tetrafluoroborate([BMIM]BF4) or 1-butyl-3-methylimidazolium chloride([BMIM]Cl). The structures and the morphologies of the obtained products were characterized by means of X-ray diffractometer(XRD), field-emission scanning electron microscopy/energy-dispersive spectroscopy(FESEM/EDS), transmission electron microscopy/selected area electron diffraction(TEM/SAED) and Raman spectroscopy. The result of XRD indicates that Cu2O and Cu microcrystals are cubic phase and the Raman spectra confirm the presence of carbon. The results of FESEM and TEM images show Cu2O microcrystals as rule cubes of 2 μm in length and Cu particles of 5 μm in diameter. According to the difference between crystal structures, bi-component and single component products were synthesized by adjusting the reaction conditions. A possible formation mechanism of Cu2O and Cu was proposed in[BMIM]BF4.  相似文献   

13.
采用过氧化氢氧化法剥离出煤炭结构中的晶体碳[煤基碳点(CDs)], 并通过亚硫酰氯氯化及乙二胺钝化等步骤对其进行氨基化修饰, 制得N, S共掺杂的氨基化煤基碳点(NH2-CDs), 再利用其表面的氨基和含氧基等官能团的配位及分散作用, 将由氯化铜原位还原得到的氧化亚铜(Cu2O)纳米粒子包覆于其中, 制备了复合催化剂Cu2O/NH2-CDs, 表征了其结构和形貌, 并考察了其可见光催化还原CO2/H2O的性能. 结果发现, NH2-CDs的存在使复合催化剂不仅具备了较强的CO2吸附性能, 而且还具有了高效的电子-空穴对分离和电子转移能力, 从而表现出优异的光催化还原CO2制备HCOOH的性能. 反应6 h时, 产物HCOOH的量为2582.4 μmol/g cat, 约为同条件下纯Cu2O作为光催化剂时产物HCOOH产率的7.3倍.  相似文献   

14.
在用阳极氧化法制备有序排列TiO2纳米管阵列薄膜的基础上,引入脉冲沉积工艺,成功实现了均匀、弥散分布的Cu2O纳米颗粒修饰改性TiO2纳米管阵列,形成Cu2O/TiO2纳米管异质结复合材料.利用场发射扫描电镜(FESEM)、场发射透射电镜(FETEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)和紫外-可见漫反射光谱(UV-Vis DRS)对样品进行表征,重点研究了Cu2O/TiO2纳米管异质结的光电化学特性和对甲基橙(MO)的可见光催化降解性能.结果表明,Cu2O纳米颗粒均匀附着在TiO2纳米管阵列的管口和中部位置,所制备的Cu2O/TiO2纳米管异质结具有高效的可见光光催化性能;在浓度为0.01 mol?L-1的CuSO4溶液中制得的Cu2O/TiO2纳米管异质结表现出最好的电化学特性和光催化性能;另外,对Cu2O纳米颗粒影响光催化活性的机理进行了讨论.  相似文献   

15.
采用第一性原理计算的方法,研究了不同浓度及不同位置Cr掺杂Cu2O体系的缺陷形成能、电子结构和可见光区域的光催化性质及产生机理。结果表明,本征Cu2O显示半导体特性,在可见光区域吸收很弱;不同浓度、不同位置的Cr掺杂体系均是稳定的,显示金属特性。与本征Cu2O相比,随着Cr掺杂浓度的增大,体系在可见光范围内的吸收峰均有不同程度的增强,并且两个Cr原子近邻掺杂时可见光区域的吸收系数最大,光催化效率最强。态密度分析发现,Cr掺杂体系在可见光范围的吸收主要由Cr 3d态电子的带内跃迁产生;不同掺杂浓度和结构构型主要影响材料在长波长段的物理性质,而对短波长段的性质影响很小。因此,通过增大Cr掺杂浓度及调控掺杂位置可以提高Cu2O在可见光区域的光催化效率,推动Cu2O在光催化方面的发展。  相似文献   

16.
以醋酸铜为铜源, 柠檬酸钠为形貌导向剂, 乙二醇和水为溶剂, 采用溶剂热法制备了立方状形貌的Cu2O微晶. 利用X射线衍射(XRD)、 X射线光电子能谱( XPS)、 扫描电子显微镜(SEM)、 透射电子显微镜(TEM)和紫外-可见漫反射光谱(UV-Vis DRS)等对Cu2O微晶进行了表征. 结果表明, 在柠檬酸钠与醋酸铜摩尔比为1.0时, 于180 ℃反应5 h可以制备出尺寸分布在0.6~1.5 μm间的均一立方状形貌Cu2O微晶. 研究了该微晶对亚甲基蓝(MB)在可见光下降解反应的光催化性能. 结果表明, 在H2O2存在下, Cu2O微晶(0.3 g/L)在100 min内对30 mg/L MB溶液的降解率可以达到98%. 该催化剂经过8次循环使用对MB的降解率仍保持在96%以上, 展现了较高的催化活性及良好的稳定性. 通过活性物种的分析对催化体系的光催化机理进行了推测.  相似文献   

17.
Coaxial nanocable consisted of p-type Cu2O nanowires and n-type TiO2 nanotubes arrays was prepared in the porous anodic aluminum oxide(AAO) template via the sol-gel method and subsequent electrodeposition method. X-ray diffraction analysis identified an anatase structure of the TiO2 nanotubes and cubic structure of the Cu2O nanowires. The obtained samples were also characterized by scanning electron microscopy(SEM), transmission electron microscopy(TEM) and energy dispersive X-ray spectroscopy(EDS). The diffrence of open circuit potential of the coaxial nanocable electrode was larger than that of the TiO2 nanotubes electrode under ultraviolet illumination, which means doping with Cu2O could improve the photovoltage effectively. Meanwhile, nanocable arrays exhibited a high activity for photodegrading Rhodamine B under Xe lamp irradiation and the photocatalysis degradation efficiency was up to 98.69% after degradation for 7 h. The enhanced photocatalytic activity could be attributed to the high migration efficiency of photoinduced electrons, which may suppress the charge recombination effectively.  相似文献   

18.
为了探究纳米多相反应过程的动力学行为,本文通过液相还原法可控合成了粒度为55 nm的立方体氧化亚铜(Cu2O)。基于纳米与块体Cu2O的区别,采用原位微量热技术获取Cu2O体系与HNO3反应过程的热动力学精细信息,结合热动力学原理及动力学过渡态理论计算得到Cu2O反应动力学参数,并建立立方体动力学模型讨论并佐证动力学实验结果。结果表明,纳米Cu2O的反应速率常数大于块体,而表观活化能、指前因子、活化焓、活化熵和活化Gibbs自由能均小于块体;随着温度的升高,纳米Cu2O的反应速率常数和活化Gibbs自由能均增大。动力学模型表明影响反应动力学参数的主要因素为:偏摩尔表面焓影响表观活化能,偏摩尔表面熵影响指前因子,偏摩尔表面Gibbs自由能影响反应速率常数。本文为纳米材料多相反应动力学参数的获取和分析应用提供了一种普适的理论模型和实验方法。  相似文献   

19.
以硝酸铜、乙酸铜、乙酰丙酮铜为原料,采用多元醇还原法合成制备了氧化亚铜立方体、微球、空心球、核壳结构等微纳米颗粒。 利用X射线衍射仪(XRD)、场发射扫描电子显微镜(FE-SEM)、透射电子显微镜(TEM)、高分辨透射电子显微镜(HRTEM)和紫外可见吸收光谱(UV-Vis)等测试手段对样品的物相、形貌、元素组分及吸光性能进行了表征。 同时考察了铜源、反应时间、和多元醇类型对氧化亚铜微纳米材料形貌的影响,对产物形成机理进行了初步的探讨。 对产物形成机理进行了初步的探讨。 采用简单低廉的多元醇合成法,可以控制合成不同相貌的氧化亚铜微纳米结构。 对制备形貌可控的氧化物具有一定的指导意义。  相似文献   

20.
Cu2O nanocubes, octahedra, spheres and truncated rhombic dodecahedral were prepared and their structural, morphological, and electronic properties were investigated by X-ray diffraction analysis, X-ray absorption near edge structure, scanning electron microscope and transmission electron microscope and X-ray absorption near edge structure. Cu2O nanocrystals were successfully employed to catalyze the 1,3-dipolar cycloaddition reaction for the synthesis of 1,4-disubstituted triazoles. Cu2O nanocubes and octahedral showed the superior catalytic performance in the cycloaddition reaction. These results reveal that crystal-plane engineering of oxide catalysts is a useful strategy for developing efficient catalysts for organic reaction.  相似文献   

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