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| 1 | Kongsheng Zhenzhong pill's effect on the learning and memory ability and its neuroprotective effects in vascular dementia rats显示文摘Clinical reports have demonstrated that the Kongsheng Zhenzhong pill (KSZZP),a classical prescription deriving from Valuable Prescription for Emergencies,has good therapeutic effects on vascular dementia.However,the mechanisms that mediate its effects remain unclear.In this study,the expression of N-methyl-D-aspartate receptor 1 mRNA,the content of nitric oxide,and the concentration of calcium in neurons was determined with in situ hybridization,spectrophotometry and flow cytometry,respectively.In addition,the expressions of N-methyl-D-aspartate receptor 1,nerve growth factor protein,and glial cell line-derived neurotrophic factor protein were detected with immunohistochemistry.We found that KSZZP could significantly decrease the expression of N-methyl-D-aspartate receptor 1 mRNA and protein,the content of nitric oxide,and the concentration of calcium in neurons.KSZZP also increased the expression of nerve growth factor and glial cell line-derived neurotrophic factor protein in the hippocampus CA1 region and in the cerebral cortex.Morris water maze and passive avoidance tests verified that KSZZP ameliorated the cognitive impairments of vascular dementia rats.Moreover,the KSZZP-induced improvements in the cognitive functions of vascular dementia rats were correlated with both inhibition of N-methyl-D-aspartate-induced excitable neurotoxicity and elevation of neurotrophic factor expression. | Xuming Ji Huayun Yu Bin Ouyang Guowei Liu Zhichun Wu Heng Liu Fang Du | 2011 | Neural Regeneration Research2011,6,30: | 3 |
| 2 | Influence of Surface Nanocrystallization on Ti Ion Implantation of Pure Iron显示文摘In order to increase the depth or concentration of Ti ion implantation of pure iron, the surface mechanical attrition treatment(SMAT), which can fabricate a nanometer-grained surface layer without porosity and contamination in a pure iron plate, was used before ion implantation. Ti ion was implanted into the SMA treated sample and coarse-grained counterpart by using a metal vapor vacuum arc source implanter. The changing of depth and concentration of Ti was studied in a function of implantation time.By optical microscopy, transmission electron microscopy and X-ray diffraction, the grain size of the nano structured surface was studied. Micro-hardness, friction and wear behavior of nano surface layers were studied. By energy dispersive X-ray spectroscopy and Auger electron spectroscopy, the chemical composition and concentration of Ti ion in the surface implantation layer were studied. Experimental results showed that the concentration of Ti increased dramatically compared with untreated coarsegrained samples, which is attributed to the existence of higher density of defects(supersaturated vacancies, dislocations, non-equilibrium grain boundaries etc.) and compression stress field in the SMA treated nanocrystallined surface layer. The interaction between the defects and the implanted solute atoms leads to the increment of solid solubility. But the implantation depth showed inconspicuous change. It is shown that the ion range is just relevant to the energy and mass of the ion, dose of injection,the mass and density of target material. | Xu Li Yanli An Yinghui Wei Huayun Du Lifeng Hou Chunli Guo Hongbo Qu Yide Wang | 2015 | Journal of Materials Science & Technology2015,31,3: | 2 |
| 3 | One way of surface alloying treatment on iron surface based on surface mechanical attrition treatment and heat treatment显示文摘 | Huayun Du Yinghui Wei Wanming Lin Lifeng Hou Zengqing Liu Yanli An Wenfu Yang | 2009 | Applied Surface Science2009,,20: | 1 |
| 4 | Fabrication and characterization of a hydroxyapatite-methylcellulose composite coating on the surface of AZ31 Magnesium alloy显示文摘 | Fan Wei Du Huayun An Yanli | 2015 | Materials Letters2015,152,: | 1 |
| 5 | Leap of Li Metal Anodes from Coin Cells to Pouch Cells:Challenges and Progress显示文摘Li metal anodes have attracted tremendous attention in the last decade because of their high theoretical capacities and low electrochemical potentials.However,until now,there has only been limited success in improving the interfacial and structural stabilities and in realizing the highly controllable and large-scale fabrication of this emerging material;these limitations have posed great obstacles to further performing fundamental and applied studies in Li metal anodes.In this review,we focus on summarizing the existing challenges of Li metal anodes based on the leap from coin cells to pouch cells and on outlining typical methods for designing Li metal anodes on demand;we controllably engineer their surface protection layers and structure sizes by encapsulating structured Li metal inside a variety of synthetic protection layers.We aim to provide a comprehensive understanding and serve as a strategic guide for designing and fabricating practicable Li metal anodes for use in pouch batteries.Challenges and opportunities regarding this burgeoning field are critically evaluated at the end of this review. | Qian Wang Tiantian Lu Yuanbin Xiao Jianyang Wu Lixiang Guan Lifeng Hou Huayun Du Huan Wei Xiaoda Liu Chengkai Yang Yinghui Wei Henghui Zhou Yan Yu | 2023 | Electrochemical Energy Reviews2023,6,1: | 0 |
| 6 | Adsorption of fluoride on clay minerals and their mechanisms using X-ray photoelectron spectroscopy显示文摘This research investigates the adsorptionmechanisms of fluoride(F)on four clay minerals(kaolinite,montmorillonite,chlorite,and illite)underdifferent F^(-)concentrations and reaction times by probingtheir fluoride superficial layer binding energies and elementcompositions using X-ray photoelectron spectroscopy(XPS).At high F^(-)concentrations(C_(0)=5-1000 mg·L^(-1)),the amount of F^(-)adsorbed(Q_(F)),amount of hydroxidereleased by clay minerals,solution F^(-)concentration,andthe pH increase with increasing C_(0).The increases areremarkable at C_(0)>50 mg·L^(-1).The QF increases significantlyby continuously modifying the pH level.At C_(0)<5-100 mg·L^(-1),clay minerals adsorb H+to protonatealuminum-bound surface-active hydroxyl sites in thesuperficial layers and induce F^(-)binding.As the C_(0)increases,F^(-),along with other cations,is adsorbed toform a quasi-cryolite structure.At C_(0)>100 mg·L^(-1),newminerals precipitate and the product depends on the criticalAl^(3+)concentration.At[Al^(3+)]>10^(-11.94)mol·L^(-1),cryoliteforms,while at[Al^(3+)]<10^(-11.94)mol·L^(-1),AlF_(3) is formed.At low C_(0)(0.3-1.5 mg·L^(-1)),proton transfer occurs,andthe F^(-)adsorption capabilities of the clay minerals increasewith time. | Junyi DU Daishe WU Huayun XIAO Ping LI | 2011 | Frontiers of Environmental Science & Engineering2011,5,2: | 0 |