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Qinghua Zhang Sandong Guo Binghui Ge Peng Chen Yuan Yao Lijuan Wang Lin Gu Yanguo Wang Xiaofeng Duan Changqing Jin Banggui Liu Richeng Yu 《Journal of the American Ceramic Society》2014,97(4):1264-1268
Manganese oxides are good candidates of strongly correlated electron materials due to the uniqueness of electronic structure of manganese and the mobility of oxygen among lattice sites under external impacts. Here, we used electron beam as the excitation source to explore the structural evolution of YMnO3 and identified a new phase under the radiation of electron beam in the transmission electron microscope. Analyses of the electron energy‐loss spectra reveal that this phase originates from ordered oxygen vacancy. We applied the first principles calculation to pick out the optimized stable structure with a lower polarization, and verified its correctness by electron diffraction and image simulations. Analyses of density of states indicate that weak Y–O covalence is favorable for the existence of ferroelectricity, supporting the electrostatic nature of ferroelectricity in the YMnO3. 相似文献
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A physical strategy for the preparation of isotactic polypropylene spheres with microsphere and bead–string spherulite morphologies 下载免费PDF全文
This study mainly focuses on the formation of isotactic polypropylene (iPP) blend morphologies with microspheres and distinct bead–string spherulites. iPP microspheres have been prepared by a simple and convenient strategy through either an isothermal or a nonisothermal crystallization process based on the macrophase‐separated structure in molten state of iPP/olefin block copolymer (OBC) blend. The dimension of the iPP spheres can be adjusted easily from about 1 µm to >10 µm by controlling the compatibility and annealing conditions. It was found that any of the following three parameters, the molecular structure of OBC (particularly the octene content), molecular weight of iPP, and annealing condition can be rescaled with others in controlling the dimension of the iPP microspheres. The mechanism of the formation of iPP microspheres was studied in detail. Surprisingly, the typical spinodal decomposition morphology with interconnected or thin sheet structure is the precursor of these microspheres. During the subsequent annealing process, it breaks up and further coarsens into spherical structure. In addition, distinct spherulites with a bead–string substructure have been obtained during the isothermal crystallization. © 2014 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2014 , 131, 40863. 相似文献
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Char barrier effect of graphene nanoplatelets on the flame retardancy and thermal stability of high‐density polyethylene flame‐retarded by brominated polystyrene 下载免费PDF全文
Graphene nanoplatelets (GNPs) with the char barrier effect were combined with brominated polystyrene (BPS) and antimony trioxide (Sb2O3) to improve the flame retardancy and thermal stability of high‐density polyethylene. Thermogravimetric analysis, limited oxygen index (LOI) testing, and vertical burning testing (UL‐94) showed that the presence of GNPs led to enhanced thermal oxidation stability and significantly reduced the flammability. The addition of 1 wt % GNPs to polyethylene/BPS–Sb (mass ratio = 92/6/2) led to UL‐94 grades from NG (first burning time > 30 s) to V‐2 (total burning time = 14 s), and the LOI value increased from 23.4 to 24.1%. The results of the pyrolysis products provided evidence that the GNPs restricted volatilization. The morphology of the chars also proved the formation of the char layer, which could act as a barrier to isolate the material from the flame and retard the vaporization of flammable gases via a tortuous pathway. © 2014 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2014 , 131, 40520. 相似文献
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利用粉煤灰合成沸石吸附重金属Cr3+,探讨吸附剂量、初始pH值以及反应温度对Cr3+吸附效果的影响,同时进行吸附等温线和吸附动力学的数据模拟。结果表明:沸石投加量、初始pH值以及反应温度均对Cr3+的去除效果影响显著。随着吸附剂投加量的不断增大,Cr3+去除效果不断提高,饱和吸附量逐渐减小。初始pH值为4时沸石吸附Cr3+的去除率为100%。反应温度的上升不利于沸石对Cr3+吸附,沸石对Cr3+的吸附效果随着反应温度的升高逐渐降低。沸石吸附Cr3+的过程符合Freundlich吸附等温式;准二级反应动力学方程能较好描述沸石对Cr3+的吸附行为。 相似文献
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使用数均分子量为2300,1,4-结构40%,1,2-结构60%的聚丁二烯环氧树脂与苯乙烯马来酸酐、溴化环氧树脂配合制作覆铜箔层压板(CCL),并对覆铜箔层压板的性能做了表征。研究了聚丁二烯环氧树脂含量对覆铜箔层压板的剥离强度、介电性能、耐热性能以及吸水率的影响。结果表明,聚丁二烯环氧树脂的加入有望提高覆铜箔层压板的可靠性。 相似文献
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