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1.
以一定浓度谷氨酸-氟硼酸(Glu-BF_4)离子液体水溶液为反应介质,摩尔比为1∶6的二水合醋酸锌和氢氧化钠为反应物,在室温下制备前驱体,再通过微波辅助加热制备了具有绒球形貌的微/纳米ZnO粉体.利用扫描电子显微镜(SEM)、X射线衍射仪、比表面积测试仪、能谱仪、拉曼光谱仪和透射电子显微镜(TEM)等对产物形貌、晶型、比表面积、组成和晶面分布进行了测定.结果显示,所得产物为六方晶系纤锌矿结构,平均粒径20.4 nm,绒球大小1.6~3.0μm,比表面积为28.3 m~2/g,产物纯度较高.当反应物浓度一定,离子液体浓度分别为0.02,0.04,0.08和0.12 mol/L时都得到了类似形貌的微/纳米ZnO粉体,且随着离子液体使用量的增加,绒球尺寸分布更加均一.当离子液体浓度一定,而反应物浓度逐渐下降时,产物形貌发生递变性变化.ZnO晶粒在Glu-BF_4离子液体诱导下首先生成不规则的纳米片,纳米片进一步聚集,在一定反应物浓度范围内生成绒球形貌粉体,反应物浓度较低时只生成绒球的核心部分,而浓度更高时则生成纳米针阵列.通过不同条件下纳米ZnO粉体形貌变化规律,探讨了强碱性条件下Glu-BF_4离子液体水溶液中微/纳米ZnO粉体的生长机制.  相似文献   

2.
借助棉花纤维模板, 采用两步法制备了Ag+/Ag/ZnO多孔纳米结构纤维材料, 并利用X射线衍射(XRD)、 X射线光电子能谱(XPS)、 扫描电子显微镜(SEM)和紫外-可见光谱(UV-Vis)等对其进行了表征. 以亚甲基蓝(MB)的脱色降解为模型反应, 考察了银修饰量(摩尔分数, 0~1.50%)对ZnO纳米结构纤维材料光催化性能的影响. 结果表明, 利用模板辅助的两步法制备了Ag+-Ag共修饰的ZnO多孔纳米结构纤维材料Ag+/Ag/ZnO, Ag+和Ag通过改变ZnO的晶胞结构、 光吸收特性及形貌等影响其光催化性能; 在可见光条件下, Ag+/Ag/ZnO的催化性能优于纯ZnO, 且与修饰量有关.  相似文献   

3.
利用水热法合成了形貌可控的氧化锌(ZnO)微纳材料。利用X射线衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜(TEM),紫外-可见(UV-Vis)分光光谱和比表面积分析(BET)等技术对所制备的ZnO材料进行了表征。不同酸碱度(pH值)条件下,经过500 ℃退火2 h制备的ZnO均为纤锌矿结构。随着前驱液pH值的增加,所得ZnO从片状晶体变为棒状晶体。片状ZnO主要暴露极性晶面,棒状ZnO主要暴露非极性晶面。从生长角度考虑,在溶液为弱酸性条件下(pH 6.5),溶液中游离的氯离子(Cl-)抑制了ZnO在锌极性面({Zn2+}crystal surface)的生长,水热反应产物为片状Zn5(OH)8Cl2·H2O,退火后得到微孔片状ZnO;当溶液中添加氢氧根(OH-)后,锌离子(Zn2+)被络合为四羟基锌络合离子(Zn(OH)42-),该络离子促进了ZnO在{Zn2+}crystal surface的生长,从而得到棒状晶体。利用上述催化剂,在氙灯照射下进行光催化还原二氧化碳实验,发现极性面较多的片状ZnO具有更高的光催化性能。  相似文献   

4.
借助棉花纤维模板、利用两步法制备了Ti4+/ZnO多壁纳米纤维结构材料,利用热重分析(TG)、X射线衍射(XRD)和扫描电子显微镜(SEM)等技术手段对其进行了表征;以亚甲基蓝(MB)的降解脱色为模型反应,考察了Ti4+掺杂量对ZnO多壁纳米纤维结构材料光催化性能的影响。 结果表明,利用模板辅助的两步法成功制备了Ti4+掺杂的ZnO多壁纳米纤维结构材料(Ti4+/ZnO);Ti4+的掺入影响ZnO材料的纳米结构,从而使Ti4+/ZnO的光催化性能明显高于ZnO;Ti4+/ZnO多壁纳米纤维结构材料良好的光催化性能可主要归于Ti4+/ZnO材料中活性中心-O2--Ti4+-O2--Zn2+-的形成和光生电荷e--h+沿着颗粒间的有效传递。  相似文献   

5.
采用溶胶-凝胶法和浸渍法制备了Li+掺杂纳米TiO2光催化剂,并用XRD和TEM等技术进行了表征;用pH值漂移法测量了催化剂的零电位pH值(pHpzc).结果表明,500℃煅烧制得的催化剂均为锐钛矿相;Li+的掺杂抑制了TiO2粒子的生长,提高了催化剂的分散性;催化剂的零电位pH值为6.6—8.1,其值取决于Li+的浓度和掺杂方式.分别以紫外光和太阳光为光源,孔雀石绿和甲基橙为降解物评价了催化剂的光催化活性;并用气相色谱测试了污染物降解产生的CO2的含量.结果显示,对孔雀石绿的降解,浸渍法和溶胶-凝胶法掺Li+都能有效提高TiO2的光催化活性,但浸渍法比溶胶-凝胶法效果更好,催化活性最高的为浸渍法制备的5%(摩尔分数)Li+掺杂TiO2,其在紫外光和太阳光下的光催化活性分别比纯TiO2提高了6—8倍和9—10倍;对甲基橙的降解,除溶胶-凝胶法制备的3%(摩尔分数)Li+掺杂TiO2能稍提高光催化活性外,其它Li+的掺杂都不同程度降低了TiO2的光催化活性;随污染物降解率的增加,最终降解产物CO2的含量增加.实验结果表明,Li+掺杂改变了催化剂表面的电荷状态从而改变了催化剂的零电位pH值是造成催化剂降解不同污染物具有不同催化活性的主要原因.  相似文献   

6.
采用静电纺丝技术及煅烧法制备了氧化锌纳米纤维, 然后采用水热法将银纳米颗粒负载到了氧化锌纳米纤维表面. 利用X射线衍射(XRD)、 X射线光电子能谱(XPS)、 能量色散X射线光谱(EDX)、 扫描电子显微镜(SEM)及透射电子显微镜(TEM)等技术对合成的Ag/ZnO纳米纤维的结构和组成进行了表征. SEM结果表明, 直径在5~100 nm之间的银纳米颗粒附着在直径在80~330 nm之间的氧化锌纤维表面形成了异质结构. 以常见的有机污染物甲基橙、 亚甲基蓝和罗丹明B等为降解底物, 对Ag/ZnO纳米纤维的光催化性能进行了表征. 结果表明, 负载银纳米颗粒后, 复合催化剂的光催化性能明显提高.  相似文献   

7.
采用静电纺丝技术及煅烧法制备了氧化锌纳米纤维,然后采用水热法将银纳米颗粒负载到了氧化锌纳米纤维表面.利用X射线衍射(XRD)、X射线光电子能谱(XPS)、能量色散X射线光谱(EDX)、扫描电子显微镜(SEM)及透射电子显微镜(TEM)等技术对合成的Ag/ZnO纳米纤维的结构和组成进行了表征.SEM结果表明,直径在5~100 nm之间的银纳米颗粒附着在直径在80~330 nm之间的氧化锌纤维表面形成了异质结构.以常见的有机污染物甲基橙、亚甲基蓝和罗丹明B等为降解底物,对Ag/ZnO纳米纤维的光催化性能进行了表征.结果表明,负载银纳米颗粒后,复合催化剂的光催化性能明显提高.  相似文献   

8.
Fe-Ni 共掺杂 ZnO 的制备及其光催化降解甲基橙活性   总被引:4,自引:0,他引:4  
 采用溶液法制备了 Fe-Ni 共掺杂 ZnO 光催化剂, 并运用 X 射线衍射、扫描电镜和原子发射光谱等对催化剂进行了表征. 以甲基橙 (MO) 为模型污染物, 评价了样品的光催化活性, 考察了甲基橙初始浓度及其 pH 值, 以及催化剂用量等对光催化反应性能的影响. 结果表明, Fe-Ni 共掺杂降低了 ZnO 的结晶度, 并促进了晶粒的长大. 光催化降解反应表明, Fe-Ni 共掺杂显著提高了 ZnO 光催化降解甲基橙的活性, 当催化剂用量为 0.6 g/L, 经 120 min 紫外光照射时, 可使甲基橙溶液 (10 mg/L) 降解率达到 93.5%. 关键词:铁; 镍; 共掺杂; 氧化锌; 光催化; 甲基橙; 降解  相似文献   

9.
采用两电极体系中恒电流电沉积在Ti基底上制得较均一的ZnO纳米棒阵列,利用SEM和XRD观察表征样品,研究Zn(NO3)2浓度及电流密度对ZnO纳米棒阵列微观形貌的影响. 以甲基橙为目标降解物,考察该电极光催化性能. 结果表明,Zn(NO3)2浓度和电流密度对纳米棒阵列的形貌有显著影响;与ITO玻璃等其他基底相比,在Ti基底上也可沉积较好均一取向的ZnO纳米棒阵列;紫外灯照射下,ZnO/Ti电极对甲基橙(10 mg·L-1)模拟印染废水降解2.5 h,降解率达到83.3%,光催化活性较佳;无光照时ZnO纳米棒的降解率仅7%.  相似文献   

10.
为提高ZnO的光催化性和稳定性,扩展对光的吸收范围,以乙二胺四乙酸(H4EDTA)为配体形成配位前驱体,通过低温热分解配位前驱体法制备了Gd3+掺杂ZnO复合物Zn1-xGdxO2(x=0~0.1)纳米颗粒。 采用X射线粉末衍射(XRD)、红外光谱法(FT-IR)、扫描电子显微镜(SEM)、荧光光谱法(FL)、紫外可见漫反射光谱法(UV-Vis DRS)、交流阻抗(EIS)以及动态光电流响应(i-t)等多种手段研究掺杂比例对氧化锌物相、表面形貌、光学性以及光电响应性等的影响。 结果表明,Gd3+掺杂摩尔分数低于3%时,产物为单相纤锌矿ZnO,提高掺杂比例(>3%)不仅使ZnO晶格萎缩,同时还出现少量Gd2O3第二相,且晶粒随掺杂摩尔分数的增加而降低。 Gd3+掺杂使ZnO能带结构发生改变,其价带、导带和带隙等各值都随着掺杂摩尔分数的增加而降低。 I-t结果表明,适量掺杂可提高ZnO的光电响应能力,其中掺杂摩尔分数1%所得ZnO的光电流密度最大(10 mA/m2)。甲基橙(MO)的光降解结果显示,Gd3+掺杂能提高ZnO的催光化性,其中1%掺杂对ZnO的催化性提高最大。 最后还对ZnO的催化选择性和耐酸碱性进行了简单研究。  相似文献   

11.
Unusual photoreactivity of zinc oxide irradiated by concentrated sunlight   总被引:5,自引:0,他引:5  
The decrease of fluorescence emission of phenol was studied in the presence of photoactive oxides (TiO2, ZnO and Fe2O3) irradiated with a sodium lamp, direct sunlight (1 sun) and concentrated sunlight (40–50 suns) in aqueous solutions. As expected photodegradation of phenol was seen to be faster for all of the oxides irradiated by concentrated sunlight. The photodegradation capacity of titanium dioxide (TiO2) is superior to that of zinc oxide (ZnO) and ferric oxide (Fe2O3) under a sodium lamp and direct sunlight, but ZnO is found to be as reactive as TiO2 under concentrated sunlight. It has been shown that ZnO is a low cost alternative solar photocatalyst to TiO2 for degradation of organics in aqueous solutions.  相似文献   

12.
Cu-ZnO is broadly used as a catalyst in CO2 reduction to produce methanol, but fabricating small-sized Cu-ZnO catalysts with strong Cu-ZnO interactions remains a challenge. In this work, a simple, low-cost method is proposed to synthesize small-sized Cu-ZnO/SiO2 with high activity and controllable Cu-ZnO interactions derived from copper silicate nanotubes. A series of Cu-ZnO/SiO2 samples with different amounts of ZnO were prepared. The activities of the as-prepared catalysts for methanol synthesis were tested, and the results revealed a volcano relationship with the weight fraction of ZnO. At 523 K, the methanol selectivity increased from 20% to 67% when 14% ZnO was added to the Cu/SiO2 catalyst, while the conversion of CO2 increased first and then decreased with the addition of ZnO. The optimum space time yield (STY) of 244 g·kg-1·h-1 was obtained on C-SiO2-7%ZnO at 543 K under 4.5 MPa H2/CO2. Furthermore, the synergistic effect of Cu and ZnO was studied by high resolution transmission electron microscopy (HRTEM), powder X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), in situ diffuse-reflectance infrared Fourier transform spectroscopy (DRIFTS), and temperature-programmed reduction (TPR) analyses. The HRTEM images showed that the Cu particles come in contact with ZnO more frequently with increased addition of ZnO, indicating that the catalysts with higher ZnO contents have a greater probability of formation of the Cu-ZnO interface, which promotes the catalytical activity of Cu-ZnO/SiO2. Meanwhile, the HRTEM images, XRD patterns, and TPR results showed that the addition of excess ZnO leads to an increase in the size of the Cu particles, which in turn decreases the total number of active sites and further degrades the activity of the catalysts. The activation energy (Ea) for methanol synthesis and reverse water gas shift (RWGS) was calculated based on the results of the catalytical test. With the addition of ZnO, Ea for methanol synthesis decreased from 72.5 to 34.8 kJ·mol-1, while that for RWGS increased from 61.3 to 102.7 kJ·mol-1, illustrating that ZnO promotes the synergistic effect of Cu-ZnO. The results of XPS and in situ DRIFTS showed that the amount of Cu+ species decreases with the addition of ZnO, indicating that the Cu-ZnO interface serves as the active site. The Cu surface area and the turnover frequency (TOF) of methanol were calculated based on the H2-TPR curves. The TOF of methanol on the Cu-ZnO/SiO2 catalysts at 543 K increased from 1.5 × 10-3 to 3.9 × 10-3 s-1 with the addition of ZnO, which further confirmed the promotion effect of the Cu-ZnO interface on the methanol synthesis. This study provides a method to construct Cu-ZnO interfaces based on copper silicate and to investigate the influence of ZnO on Cu-ZnO/SiO2 catalysts.  相似文献   

13.
利用太阳能驱动生产高能量密度的H2O2太阳能燃料引起了广泛关注,但目前光催化剂缓慢的动力学限制了其实际应用。本文制备一种聚多巴胺(PDA)改性的反蛋白石结构ZnO(ZnO@PDA)光催化剂,用于可持续性的光催化产H2O2。由于电子的转移,因此当PDA与ZnO接触后,会在界面处形成一个从PDA指向ZnO的内建电场。在内建电场和能带弯曲的驱动下,ZnO导带中的光生电子与PDA最高占据分子轨道(HOMO)中的空穴复合,符合梯型异质结的电荷转移和分离途径。这种独特的梯型异质结确保了有效的电子或空穴的分离并且留存下具有强氧化还原能力的光生载流子。此外,与纯ZnO相比,反蛋白石结构的ZnO@PDA具有更强的光吸收能力。实验表明,归因于光吸收能力的提高,光生载流子的有效分离和强氧化还原能力,负载0.03% (原子分数) PDA的ZnO样品具有最佳的产H2O2性能(1011.4 μmol·L-1·h-1),分别是纯ZnO和PDA的4.4和8.9倍。  相似文献   

14.
Cr2O3@ZnO hetero-junction hierarchical nanostructures were designed to be enhanced xylene sensing material, and thereinto, flower-like ZnO hierarchical nanostructures were synthesized via a solution-based method, and then Cr2O3 particles were developed on the surface of ZnO petals via a solvothermal method. From the results of XRD patterns, SEM and TEM images, it can be observed that ZnO has a high-quallity crystallinity and Cr2O3 particles scatter uniformly on the suruface of ZnO. The products with different ratios of Cr2O3 were used to fabricate gas sensors, and the result indicates that the hetero-junction structures prompt the response to xylene, and the reason may be attributed to the decrease of main carriers concentration caused by the p-n junction between ZnO(n-type semiconductor) and Cr2O3(p-type semiconductor), as well as the catalytic oxidation effect on methyl groups of the xylene by Cr2O3.  相似文献   

15.
纳米Ag/ZnO光催化剂及其催化降解壬基酚聚氧乙烯醚性能   总被引:4,自引:0,他引:4  
采用氨浸法制备了不同Ag负载量的纳米Ag/ZnO光催化剂,并用X射线衍射、比表面积测定、X射线光电子能谱和漫反射紫外-可见光谱测定了Ag/ZnO的晶型结构、比表面积、表面组成和光谱特征.以壬基酚聚氧乙烯醚(NPE-10)为模型污染物,分别在紫外光和可见光照射下考察了纳米Ag/ZnO的光催化活性.结果表明,Ag能成功地负载到ZnO表面,且随着Ag负载量的增加,ZnO的粒径逐渐增大,比表面积逐渐减小.与纳米ZnO样品相比,Ag/ZnO中Ag 3d5/2结合能减小,而Zn 2p和O 1s结合能增大,ZnO表面的羟基氧和吸附氧含量增加.当Ag负载量大于0.5%时,Ag/ZnO样品的吸收光谱发生红移,在可见光区出现吸收.光催化降解结果表明,0.5%Ag/ZnO样品的光催化活性最高,在紫外光和可见光照射3 h后NPE-10降解率分别约为77%和56%,而ZnO样品的光催化活性仅约为61%和40%.  相似文献   

16.
采用等温溶解法测定了偏钒酸铵(NH4VO3)在NH4H2PO4-H2O和(NH4)3PO4-H2O体系中T = 298.15-328.15 K时的溶解度以及溶液的密度和pH值。结果表明, NH4VO3的溶解度随着(NH4)3PO4或NH4H2PO4溶液浓度的增大,先降低后升高,这是由于同离子效应、化学反应平衡及离子活度的共同作用。比较T = 298.15K时, NH4VO3分别在NH4H2PO4-H2O、(NH4)2HPO4-H2O和(NH4)3PO4-H2O体系中溶解度,发现在相同的磷酸盐浓度下, NH4VO3的溶解度在NH4H2PO4-H2O体系中最大,在(NH4)3PO4-H2O体系中居中,在(NH4)2HPO4-H2O体系中最小。进一步地,在T = 298.15 K和磷酸盐浓度C = 0.5 mol·kg-1时,结合pH值和反应溶度积常数KSP等计算三个体系中的平均离子活度系数(γ±),发现γ±值在(NH4)2HPO4-H2O体系中最大,在(NH4)3PO4-H2O体系中居中,在NH4H2PO4-H2O体系中最小,与溶解度规律一致。  相似文献   

17.
Nano-ZnO/poly(methyl methacrylate)(PMMA) composite latex microspheres were synthesized by in-site emulsion polymerization. The interfacial compatibility between nano-ZnO particles and PMMA were improved by treating the surface of nano-ZnO particles hydrophobically using methacryloxypropyltrimethoxysilane (MPTMS). TEM indicated that nano-ZnO particles present in nanosphere and have been encapsulated in the PMMA phase. FT-IR confirmed that MPTMS reacted with the nano-ZnO particle and copolymerized with MMA. It was clearly found from SEM that ZnO nanoparticles can be homogeneously dispersed in the PVC matrix. The absorbance spectrum of the nanocomposite polymer suggested that increasing the amount of nano-ZnO in composite particles could enhance the UV-shielding properties of the polymers. The nano-ZnO/PMMA composite particle could eliminate aggregation of ZnO nanoparticle and improve its compatibility with organic polymer. This means that the composite particles can be widely applied in lots of fields.  相似文献   

18.
固态电池以其高安全性和高能量密度而备受关注。石榴石型固体电解质(LLZO)由于具有较高的离子导电性和对锂金属的稳定性,在固态电池中具有应用前景,但陶瓷与锂金属较差的界面接触会导致高的界面阻抗和可能形成的枝晶穿透。我们利用LLZO表层独特的H+/Li+交换反应,提出了一种简便有效的金属盐类水溶液诱发策略,在电解质表面原位构建ZnO亲锂层,界面处LiZn合金化实现紧密连续的接触。引入改性层后,界面阻抗可显著降低至约10Ω·cm2,对称电池能够在0.1mA·cm-2的电流密度下实现长达1000h的长循环稳定性。匹配正极LiFePO4(LFP)或LiNi0.5Co0.2Mn0.3O2(NCM523)的准固态电池在室温下能够稳定循环100次以上。  相似文献   

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