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采用分解无定形柠檬酸和乙二胺四乙酸聚合体法,合成了Pr_(1.8)M_(0.2)CoO_4(M = K,Mg,Ca,Sr,Ba)催化材料,以CO + NO为探针反应,运用XRD、BET、TPR等手段进行表征.结果表明:碱(土)金属掺杂后的Pr_(1.8)M_(0.2)CoO_4复合氧化物在950℃焙烧8 h均能形成类钙钛矿型结构;掺入不同碱(土)金属的PrMCoO_4复合氧化物在粒子大小、比表面积、B位正三价离子、氧空穴、催化活性等方面存在差异,其中掺入碱土金属Ba的化合物Pr_(1.8)M_(0.2)CoO_4表现出较好的催化性能.  相似文献   
2.
The title compound (4,4′-H2bipy)[CdBr4]·H2O 1 has been synthesized via hydrothermal reaction and characterized by X-ray diffraction. The crystal belongs to monoclinic,space group P21/c with a=8.260(3),b=23.926(7),c=9.774(2),β=106.777(9)o,C10H12Br4CdN2O,Mr=608.26,V=1849.4(9)3,Z=4,Dc=2.185 g/cm3,S=1.005,μ(MoKα) =9.814 mm–1,F(000)=1128,R=0.0646 and wR=0.0989. The crystal structure analysis of 1 reveals that the title compound features an isolated structure,based on discrete 4,4′-H2bipy moieties and lattice water molecules which are linked by hydrogen bonds together with tetra-hedral cadmium atoms terminally coordinated by four bromine atoms.  相似文献   
3.
A novel holmium complex [Ho(HIA)_2(H_2O)_4(NO_3)](NO_3)_2(1, HIA = isonicotinic acid) has been synthesized through hydrothermal reactions and characterized by single-crystal X-ray diffraction. Complex 1 crystallizes in the C2/c space group of monoclinic system: a = 14.4797(7), b = 12.4768(2), c = 13.3471(5) ?, β = 118.690(4)°, V = 2115.26(13) ?~3, C_(12)H_(16)HoN_5O_(17), Mr = 667.23, Z = 4, Dc = 2.095 g/cm~3, μ(Mo Kα) = 3.838 mm~(–1) and F(000) = 1304. The crystal structure of 1 is characterized by an isolated structure. Solid-state photoluminescence experiment uncovers that it shows yellow light emission. The emission bands are originated from the characteristic emission of the 4 f electrons intrashell transition of the ~5S_2 → ~5I_8 and ~5F_5 → ~5I_8 of the Ho~(3+) ions. Energy transfer mechanism is explained by the energy level diagram of the Ho3+ ion and the isonicotinic acid ligand. It has remarkable CIE chromaticity coordinates of(0.4929, 0.4632), so it may be a promising color converter for lighting and displays.  相似文献   
4.
CdS/SiO2纳米棒核/壳结构的制备和发光性能   总被引:11,自引:0,他引:11  
利用在醇介质中氨水催化水解硅酸乙酯(TEOS)制备SiO2来包覆半导体CdS纳米棒而形成CdS/SiO2核/壳结构.通过X射线衍射(XRD)、透射电子显微镜(TEM)证实SiO2包覆壳层为非晶,且壳层厚度随TEOS浓度的增大而增加,在10~30 nm之间.并研究了其紫外 可见吸收光谱(UV Vis)和荧光发射光谱(PL)的性质.  相似文献   
5.
CdS/MS(M=Ag,Pb,Cu,Zn)半导体纳米复合结构的制备   总被引:5,自引:0,他引:5       下载免费PDF全文
利用金属硫化物在水溶液中溶度积的差异和通过水热及超声波等辅助方式,利用离子置换法与共沉淀法,对CdS纳米棒上金属离子(Cd2+)的部分置换而对纳米微粒进行侵蚀或包覆,形成镶嵌式点缀结构或完全包覆层的异质核-壳结构CdS/MS(M=Ag+,Cu2+,Pb2+,Zn2+)。使用XRD和TEM对所得样品进行了表征。  相似文献   
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