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1.
Fe-based compounds with good environmental friendliness and high reversible capacity have attracted considerable attention as anode for lithium-ion batteries.But,similar to other transition metal oxides(TMOs),it is also affected by large volume changes and inferior kinetics during redox reactions,resulting in the destruction of the crystal structure and poor electrochemical performance.Here,Fe_3O_4/C nanospheres anchored on the two-dimensional graphene oxide as precursors are phosphated and sintered to build the multiphasic nanocomposite.XRD results confirmed the multiphasic nanocomposite composed of Fe_2O_3,Fe_3O_4 and Fe_3PO_7,which will facilitate the Li~+ diffusion.And the carbonaceous matrix will buffer the volume changes and enhance electron conduction.Consequently,the multiphasic Febased anode delivers a large specific capacity of 1086 mAh/g with a high initial Coulombic efficiency of 87% at 0.1 C.It also has excellent cycling stability and rate property,maintaining a capacity retention of~87% after 300 cycles and a high reversible capacity of 632 mAh/g at 10 C.The proposed multiphasic structure offers a new insight into improving the electrochemical properties of TMO-based anodes for advanced alkali-ion batteries.  相似文献   
2.
g-C3N4 have been widely used in the fields of photocatalytic hydrogen production,photocatalytic degradation of dyes and oxidative degradation of toxic gases due to their excellent performance.It has attracted extensive attention in recent years due to its highly efficient photocatalytic capacity of hydrogen generation,water oxidation,carbon dioxide reduction and degradation of organic pollutants.Because of the abundant carbon and nitrogen composition of the earth,large-scale production and industrial applications of this material are possible.The modification of this material makes its performance more excellent so that this new material can obtain a steady stream of vitality.These outstanding works have become important materials and milestones on the road to mankind's photocatalytic hydrogen production.This review will begin with the basic idea of designing,synthesizing and improving g-C3N4 based photocatalytic materials,and introduce the latest development of g-C3N4 photocatalysts in hydrogen production from four aspects of controlling the carbon/nitrogen ratio,morphology,element doping and heterojunction structure of g-C3N4 materials.  相似文献   
3.
Hollow nanostructures have attracted increasing research interest in hydrogen evolution reaction owing to their unique structural features.Herein,Ni-Co mixed metal phosphide hollow and porous polyhedrons was successfully composited(expressed as NiCoP).Benefiting from the synergistic effects of ZIF-67 by doping Ni elements and the well-defined hollow and porous structure,the as-synthesized NiCoP hollow and porous polyhedrons exhibit better electrochemical properties and mechanical stability for hydrogen evolution reaction over a pH-universal range,with a small Tafel slopes of 72,101,176 mV/dec,and a low overpotential of 82,102,261 mV at a current density of 10 mA/cm2 in 0.5 mol/L H2SO4,1 mol/L KOH and1 mol/L phosphate buffer solution(PBS).This general strategy can also be applied to fabricate other hollow cobalt-based phosphides and MOFs-derived materials for HER.  相似文献   
4.
Graphene-like C3N4/Ag3PO4 photocatalysts are synthesized by calcination and solutions precipitating method.The obtained g-C3N4/Ag3PO4 composites display excellent photocatalytic activity for the degradation of methylene orange(MO),rhodamine B(RhB)and tetracycline(TC)under visible light irradiation.The solutions containing RhB(10 mg/L)and MO(10 mg/L)can be efficiently degraded within15 min and 30 min.Especially,nearly 80%of TC(50 mg/L)is degraded within 20 min.which are much better than those of pure g-C3N4 nanosheets and Ag3PO4,implying that strong interaction and reasonable energy band alignment in the contact interface can effectively transfer the carries.Furthermore,the g-C3N4/Ag3PO4 composites exhibit the improved stability,and only a slight decrease is observed after three recycling runs.Moreover,the impact of inorganic ions and PH values on the degradation performance is rather small.The Z-scheme photocatalytic mechanism of the g-C3N4/Ag3PO4 composites based on the active species trapping experimental is proposed.This work demonstrates the promising applications of the g-C3N4/Ag3PO4 composites in environmental issues.  相似文献   
5.
作为一种特殊的赋范环微积,而比广义越复变函数更为丰富广泛的泛复变函数数,不但在数学中导出了一些新的结果,如[6]中的新型边值问题等引起了大家的兴趣。而且,作为一种新的工具,你在物理和力学中显示了它的作用,得到了许多新的物理结论,从而对揭开物理中许多迷惘现象的面纱提供了新的途径。这些也显示了泛复变函数这一新数学方向的生命力。不断地充实发展这一领域是很有必要的:  相似文献   
6.
PbI2 nanostructures were successfully prepared via a surfactant-assisted hydrothermal method at a low temperature of 100°C for 8 h. Polyvinyl pyrrolidone (PVP) and cetyltrimethylammonium bromide (CTAB) were used as surfactants. The resulting products were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and UV–vis spectroscopy. It was found that the formation of PbI2 nanostructures with various morphologies could be well controlled by the adjustment of the pH of the synthesis solution, selection of suitable surfactant, and the amount of the desired surfactant. UV–vis absorption results showed an apparent shift of the band gap energy of the PbI2 nanoparticles relative to that of the bulk.  相似文献   
7.
蛋白质分子印迹   总被引:2,自引:0,他引:2  
分子印迹技术是一种新型的高效分离技术,具有空间选择性识别特性。本文介绍了分子印迹技术在蛋白质大分子上的应用和发展,包括蛋白质分子印迹选用的单体和交联剂、印迹方法、印迹机理、蛋白质分子印迹技术的应用以及存在的一些问题。  相似文献   
8.
枸杞子中红色素的提取及稳定性   总被引:10,自引:0,他引:10  
伍明  王杰 《应用化学》1996,13(4):95-97
枸杞子中红色素的提取及稳定性伍明,王杰,闪春霞,任仲皎,宋锡瑾,詹国庆(中南民族学院化学系武汉430074)关键词枸杞,色素,液泛提取法枸杞子为茄科枸杞属植物的果实,具有补肾养肝,润肺明目以及调节机体免疫力,抑制肿瘤生长和细胞突变,延缓衰老及抗脂肪肝...  相似文献   
9.
Disconnection in white matter (WM) pathway and alterations in gray matter (GM) structure have been hypothesized as pathogenesis in schizophrenia. However, the relationship between the abnormal WM integrity and the alteration of GM in anatomically connected areas remains uncertain. Moreover, the potential influence of antipsychotic medication on WM anisotropy and cortical morphology was not excluded in previous studies. In this study, a total number of 34 subjects were enrolled, including 17 medicated-naïve chronic schizophrenia patients and 17 healthy controls. Tract-based spatial statistics (TBSS) were applied to investigate the level of WM integrity. The FreeSurfer surface-based analysis was used to determine GM volume, cortical thickness and the surface area of GM regions which corresponded to abnormal WM fiber tracts. We observed that patients possessed lower fractional anisotropy (FA) values in the left inferior fronto-occipital fasciculus (IFOF) and left inferior longitudinal fasciculus (ILF), along with smaller GM volume and cortical thinning in temporal lobe than the healthy controls, which reflected the underlying WM and GM disruption that contributed to the disease. In the patient population, the lower connectivity of ILF and IFOF was positively associated with cortical thickness in left lateral orbitofrontal cortex, superior temporal gyrus and lingual gyrus in males, and positively correlated with GM volume in left lateral orbitofrontal cortex in females. On the other hand, it was negatively correlated with cortical area of middle temporal gyrus in males and temporal pole in females respectively, but not when genders were combined. These findings suggested that abnormal WM integrity and anatomical correspondence of GM alterations in schizophrenia were interdependent on gender-separated analysis in patients with schizophrenia. Moreover, combining TBSS and FreeSurfer might be a useful method to provide significant insight into interacting processes related to WM fiber tracts and GM changes in schizophrenia.  相似文献   
10.
综合集成研讨厅的几个示例   总被引:2,自引:0,他引:2  
唐锡晋 《系统科学与数学》2009,29(11):1507-1516
顺应于国际系统反思的浪潮,以钱学森为首的我国系统科学家于1990年正式提出了从定性到定量综合集成方法论用以处理以往还原论所无法解决的开放复杂巨系统问题.1992年钱学森又继而提出了综合集成研讨厅的概念(简称为HWMSE)作为该方法论的实践平台,其中特别强调利用信息技术的优势.此后,不断有HWMSE的研制来体现综合集成方法论的功力,同样也引来质疑.通过3个未自称为HWMSE的示例,包括国外实验室反恐系统、笔者提出的“在线会场”及众所周知的搜索引擎,对每一个示例阐明了其中含有的构成研讨厅的专家体系、机器体系与知识体系的内容及在该研讨厅中正在进行的综合集成复杂问题求解的活动.期望以此扩展对HWMSE功能的理解,促进HWMSE的推广和综合集成方法论的实践.  相似文献   
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