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31.
三维有序大孔杂化材料SiW11O39^8——SiO2和γ—SiW10O36^8——SiO2的制备与表征 总被引:2,自引:1,他引:2
通过溶胶 -凝胶和聚苯乙烯模板等方法制备了含缺位 Keggin阴离子 Si W1 1 O8- 3 9和 γ-Si W1 0 O8- 3 6的三维有序大孔杂化氧化硅复合材料 ,并通过紫外漫反射光谱 ( UV/ DRS)、傅里叶变换红外光谱 ( FTIR)、固体核磁共振波谱 ( MAS NMR)等手段对其结构进行了表征 .结果表明 ,杂化材料中的 Keggin阴离子仍保留其基本骨架结构 ,但其与氧化硅基体之间存在化学作用 .杂化材料的孔道结构用扫描和透射电子显微镜 ( SEM和TEM)进行表征 ,其平均孔径为 ( 335± 5 0 ) nm.对杂化材料孔壁的微孔性通过氮气吸附进行了测定 .此类材料对水溶液中羟基丁二酸的降解反应具有活性 ,光催化过程中未发现 Keggin阴离子自载体中脱落的现象 . 相似文献
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以有机金属 Pd 硅烷和乙基桥联硅烷为混合硅源, 在表面活性剂作用下进行共缩聚反应, 制备了有序介孔有机金属 Pd(II) 催化剂 Pd(II)-PMO(Et). 采用傅里叶变换红外光谱、核磁共振谱、X 射线衍射、透射电子显微镜和 N2 吸附脱附等手段对催化剂进行了表征. 结果表明, 与后嫁接法相比, 共聚法制得的催化剂活性位分散均匀, 孔道不易堵塞, 同时乙基修饰的孔壁增强了催化剂表面疏水性, 有利于反应物在孔道内的扩散和吸附. 在水介质 Suzuki 反应中, Pd(II)-PMO(Et) 的催化活性与均相催化剂 Pd(PPh3)2Cl2 的相当, 且可重复使用. 相似文献
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The metabolic profiling of kiwifruit (Actinidia deliciosa, Hayward cultivar) aqueous extracts and the water status of entire kiwifruits were monitored over the season (June-December) using nuclear magnetic resonance (NMR) methodologies. The metabolic profiling of aqueous kiwifruit extracts was investigated by means of high field NMR spectroscopy. A large number of water-soluble metabolites were assigned by means of 1D and 2D NMR experiments. The change in the metabolic profiles monitored over the season allowed the kiwifruit development to be investigated. Specific temporal trends of aminoacids, sugars, organic acids and other metabolites were observed.The water status of kiwifruits was monitored directly on the intact fruit measuring the T2 spin-spin relaxation time by means of a portable unilateral NMR instrument, fully non-invasive. Again, clear trends of the relaxation time were observed during the monitoring period.The results show that the monitoring of the metabolic profiling and the monitoring of the water status are two complementary means suitable to have a complete view of the investigated fruit. 相似文献
36.
Physical properties of NdPd2Ge2 and NdAg2Ge2, crystallizing with the tetragonal ThCr2Si2-type crystal structure, were investigated by means of magnetic, calorimetric, electrical transport as well as by neutron diffraction measurements. The specific heat studies and neutron diffraction measurements were performed down to 0.30 K and 0.47 K, respectively. Both compounds exhibit antiferromagnetic ordering below TN equal to 1.5 K for NdPd2Ge2 and 1.8 K for NdAg2Ge2. Neutron diffraction data for the latter germanide indicate antiferromagnetic collinear structure described by the propagation vector k=(0.5, 0, 0.5). The Nd magnetic moments equal to 2.24(5) μB at 0.47 K are aligned along the a-axis and have the +− sequence within the crystal unit cell. For NdPd2Ge2 only very small Bragg peaks of magnetic origin were observed in the neutron diffraction patterns measured below TN, thus hampering determination of the magnetic structure. Both compounds exhibit metallic-like electrical conduction. From the specific heat data the crystal electric field (CEF) levels schemes were determined. Difference between the overall CEF splitting in the two compounds is correlated with their structural parameters. 相似文献
37.
The controllable preparation and forming mechanism of rare-earth Y3+ and Eu3+ chemically co-doped fluorescent mesoporous silica were studied in detail. Their structures, morphologies, chemical compositions and emission properties were characterized and evaluated by small angle X-ray scattering, nitrogen adsorption/desorption measurements, high resolution transmission electron microscopy, inductive coupled plasma-atomic emission, X-ray photoelectron spectra and fluorescent spectroscopy. The results show that chemical composition of the resultant mesoporous materials were significantly affected by solution acidity condition, and can be effectively adjusted by varying the feed ratio of raw materials at a suitable solution acidity condition. These materials with a well-ordered two-dimensional hexagonal mesoporous structure and high specific surface area exhibit significantly broadened emission band from 526 to 682 nm and the fluorescent emission mechanism and influence of materials structure on optical properties were investigated. 相似文献
38.
39.
F. Barbadillo A. Fuentes S. Naya R. Cao J. L. Mier R. Artiaga 《Journal of Thermal Analysis and Calorimetry》2007,87(1):223-227
The aim of this paper is to evaluate and explain the fitting of dynamic
TG curves by a mixture of logistic functions. This model assumes that more
than one physical process may be involved in each mass loss step and that
each physical process may extend along all the experiment. One of the main
sources of difficulties in TG is that, very often, different stages of decomposition
substantially overlap each other. Several real and simulated TG curves were
analysed in this paper. An optimal fitting of the TG curves was obtained by
a mixture of logistics. In many cases the optimal fitting reproduces accurately
the TG curve. Accordingly, the TG curve can be understood as a sum of parallel
reactions, where each single reaction is represented by one or a small number
of logistic components. Additionally, making use of the analytical derivative
of the fitting, a mixture of Arrhenius reaction order equations was applied
to the same curves. In all the cases, the fitting obtained with the mixture
of Arrhenius was worse than the obtained with the mixture of logistics. A
software was developed to automatically perform these tasks. The physical
meaning of the fitting was explained. 相似文献
40.
燃料电池中贵金属铂的大量使用是阻碍其发展的关键因素,亟需探索高效廉价的替代型电催化剂.在目前的替代型非贵金属催化剂研究中,氮杂炭材料是一类氧还原反应催化活性最好、成本最低廉的催化剂,被认为是最有可能取代Pt催化剂而获得实际应用的催化剂.氮杂有序介孔炭材料因具有极高的比表面积和规整的孔道结构,可实现活性位点的密集组装与反应物料的快速传输,受到研究者的广泛关注.本文分别以苯胺、吡咯和邻菲罗啉为含氮前驱体,介孔分子筛SBA-15为硬模板,采用纳米浇铸法成功制备了具有高比表面积的氮杂有序介孔炭材料,系统研究了不同含氮前驱体对氮杂有序介孔炭材料的影响.采用氮气吸附-脱附等温线、透射电子显微镜(TEM)、X射线衍射(XRD)和X射线光电子能谱(XPS)等方法研究了氮杂有序介孔炭的组成与结构,采用循环伏安法(CV)以及线性扫描伏安法(LSV)等手段考察了其电化学行为与氧还原反应极化性能.氮气吸附-脱附等温线结果表明,采用三种不同含氮前驱体制备的氮杂炭材料都对应Ⅳ型吸脱附等温线以及H4型滞后环,表明所制备的氮杂炭材料具有介孔结构.由TEM可以清楚地观察到氮杂炭材料已经成功地反转了SBA-15模板的孔道结构.同时发现,含氮前驱体对氮杂炭材料的比表面积和孔结构产生较大影响:以吡咯和邻菲罗啉为前驱体制备的炭材料C-PY-900和C-Phen-900的比表面积较高,分别为765和746 m2/g,而以苯胺为前驱体制备的炭材料C-PA-900比表面积较小(569 m2/g);三种炭材料平均孔径大小顺序为C-Phen-900 (3.7 nm)< C-PY-900 (5.0 nm)< C-PA-900 (5.9 nm),这是由于不同含氮前驱体在高温焙烧过程中热分解行为不同所致.XRD结果发现,含氮前驱体对氮杂炭材料的晶型基本没有影响,均为无定形碳.XPS结果表明,采用苯胺、吡咯以及林菲啰啉为前驱体制备的氮杂炭材料中氮含量基本相同,分别为3.13 at%,3.32 at%和3.33 at%,说明在相同热解条件下材料中的氮含量基本不受前驱体的影响,但不同配位环境的氮含量以及氮活化碳原子的含量却有较大差异,其氮活化碳原子的相对含量分别为15.60%,19.87%和23.04%.电化学测试结果表明,三种氮杂介孔炭材料的氧还原反应电催化活性顺序为C-PA-900<C-PY-900<C-Phen-900,其H2O2产率低于30%,说明氧还原反应经历4电子转移路径.在碱性条件下,所制氮杂有序介孔炭材料C-PY-900和C-Phen-900表现出较商品Pt/C催化剂更加优异的氧还原反应电催化性能.综上可见,通过改变含氮前驱体的类型可以有效调变氮杂炭材料的比表面积、孔道结构以及N 1s与C 1s化学态,从而调控氧还原反应活性,本文不仅制备出高活性的非贵金属氧还原电催化剂,同时也为高活性炭基电催化剂的可控制备提供了思路. 相似文献