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861.
Recently, 12442 system of Fe-based superconductors has attracted considerable attention owing to its unique double-Fe As-layer structure. A steep increase in the in-plane upper critical field with cooling has been observed near the superconducting transition temperature, Tc, in KCa2Fe4As4F2 single crystals. Herein, we report a high-field investigation on upper critical field of this material over a wide temperature range, and both out-of-plane(H∥c, Hc2c) and in-plane(H∥ab, Hc2ab ) directions have been measured.A sublinear temperature-dependent behavior is observed for the out-of-plane Hc2c , whereas strong convex curvature with cooling is observed for the in-plane Hc2ab . Such behaviors could not be described by the conventional Werthamer-Helfand-Hohenberg(WHH) model. The data analysis based on the WHH model by considering the spin aspects reveals a large Maki parameter α=9,indicating that the in-plane upper critical field is affected by a very strong Pauli paramagnetic effect.  相似文献   
862.
In this article, we study the existence of mild solutions and approximate controllability for non-autonomous impulsive evolution equations with nonlocal conditions in Banach space. The existence of mild solutions and some conditions for approximate controllability of these non-autonomous impulsive evolution equations are given by using the Krasnoselskii''s fixed point theorem, the theory of evolution family and the resolvent operator. In particular,the impulsive functions are supposed to be continuous and the nonlocal item is divided into Lipschitz continuous and completely bounded. An example is given as an application of the results.  相似文献   
863.
Three 4.8 nm isostructural{M72}(M=Co for CIAC-128,Ni for CIAC-129,Fe for CIAC-130) metal-organic polyhedra(MOPs) are constructed by eighteen M4-p-tert-butylthiacalix[4]arene (M4-TC4A) units bridged via sixteen four-connected 5,5′-(1H-1,2,4-triazole-3,5-diyl) diisophthalic acid (H4TADIPA) linkers.These MOPs are featured with a rarely reported concave coordination cage,which can be simplified as a squeezed double-decker hexagonal prism pressed from the top and bottom hexagonal faces.Furthermore,CIAC-128,CIAC-129 and CIAC-130 are the highest nuclearity discrete clusters of Co,Ni and Fe reported so far.CIAC-128 has higher separation selectivity of C3H8 than CH4 under ambient conditions,and also exhibits separation selectivity for C2H6/CH4,C2H2/CH4,and C2H4/CH4.In addition,CIAC-128 can provide the cavity for the confined synthesis of noble metal nanoclusters such as Pd nanoclusters and the resulting Pd@CIAC-128 hybrids show higher electrocatalytic activity than commercial Pt/C towards hydrogen evolution reaction (HER).  相似文献   
864.
The interaction between the film-cooling jet and vortex structures in the turbine passage plays an important role in the endwall cooling design. In this study, a simplified topology of a blunt body with a half-cylinder is introduced to simulate the formation of the leading-edge horseshoe vortex, where similarity compared with that in the turbine cascade is satisfied. The shaped cooling hole is located in the passage. With this specially designed model, the interaction mechanism between the cooling jet and the passage vortex can therefore be separated from the crossflow and the pressure gradient, which also affect the cooling jet. The loss-analysis method based on the entropy generation rate is introduced, which locates where losses of the cooling capacity occur and reveals the underlying mechanism during the mixing process. Results show that the cooling performance is sensitive to the hole location. The injection/passage vortex interaction can help enhance the coolant lateral coverage, thus improving the cooling performance when the hole is located at the downwash region. The coolant is able to conserve its structure in that, during the interaction process, the kidney vortex with the positive rotating direction can survive with the negative-rotating passage vortex, and the mixture is suppressed. However, the larger-scale passage vortex eats the negative leg of the kidney vortices when the cooling hole is at the upwash region. As a result, the coolant is fully entrained into the main flow. Changes in the blowing ratio alter the overall cooling effectiveness but have a negligible effect on the interaction mechanism. The optimum blowing ratio increases when the hole is located at the downwash region.  相似文献   
865.
The kinetic differential equations for the anionic copolymerization with constant monomer ratio are treated by Laplace transformation and a graphical technique. A theoretical method is established by which all molecular parameters of the copolymers, such as the molecular distribution (MWD), the average molecular weight and the polydispersity, can be calculated from reaction rate constants, initial conditions and polymerization time. Three-dimensional plots obtained by numerical computation are presented to illustrate the influence of the reaction conditions on the MWD's of the copolymers.  相似文献   
866.
为了提高难溶性药物的溶出速率,采用水热合成法制备了MCM-41和SBA-15两种介孔二氧化硅载体材料,利用浸渍法将模型药茴拉西坦负载于两种载体上.利用扫描电子显微镜(SEM)、高分辨透射电子显微镜(HRTEM)、小角X射线衍射(XRD)、N2吸附-脱附、红外光谱(IR)、差热-热重(DTA-TG)对载药前后载体材料的表面形貌、粒径、孔径、孔容、比表面积、晶胞参数、骨架结构等进行测试,结果表明MCM-41和SBA-15具有相同的二维六方孔道结构,孔径及孔容分别为3.49 nm和6.67 nm,载药后的载药量分别为17;和22;,药物以非晶态装载于介孔孔道中没有影响介孔二氧化硅的骨架结构,但使介孔孔容及比表面积都有所降低.通过在不同pH溶出介质中负载于载体上的茴拉西坦与原料药晶体的溶出比较发现,两种载体均能够显著提高茴拉西坦的溶出速率.结合材料表征、载药量及溶出度综合比较,SBA-15载体的载药及释药性能均优于MCM-41载体.  相似文献   
867.
通过一步法完成SiC量子点的合成和表面改性,并对其微观结构、光学性质和理化性质进行了表征,结果表明该量子点半径小于激子波尔半径,导致了量子限制效应现象而产生光致发光,通过对其红外光谱的分析发现碳化硅量子点表面既已耦合了巯基,因此该量子点可以作为量子点标记技术中又一种新型的标记材料,然后用SiC量子水相溶液对有、无根皮苷环境下的串珠镰刀菌进行标记并长时程荧光成像,同时让已成功标记的该菌侵染苹果植株幼苗,试验表明,根皮苷能够促进串珠镰刀菌的生长,主要表现在菌落成长的速度和数量上,进一步研究发现,串珠镰刀菌生长态势随周围环境中根皮苷含量的增加而更趋旺盛,此外串珠镰刀菌对苹果幼苗侵染的动态示踪过程表明幼苗的第一感染部位为根毛区.  相似文献   
868.
使用聚丙烯酰胺/硬脂酸改性体系对半水硫酸钙晶须进行表面改性,研究聚丙烯酰胺的加入对改性过程中硫酸钙晶须的稳定化影响.通过显微镜观察晶须产品的形貌,利用X射线衍射仪分析其相组成,利用傅里叶红外光谱仪检测晶须产品的表面基团.结果 表明:聚丙烯酰胺/硬脂酸协同改性硫酸钙晶须的晶体形貌及相组成未发生改变,较硬脂酸单一改性后的晶须长径比有所上升,且在水溶液中形貌保持时间延长,改性后晶须的活化指数、接触角较硬脂酸单一改性有明显上升,实现了硫酸钙晶须改性过程中的稳定化处理.  相似文献   
869.
石墨烯作为一种理想的新型二维纳米材料,有着独特的理化性能和广泛应用价值,但成本高、产率低、分散性较差是制约其推广应用的关键.为了解决这一问题,现以北方杨树叶为原料,以KMnO4和H2SO4为氧化剂,水热氧化裂化直接得到MnO2仿生石墨烯复合材料(MnO2@BGO).通过XPS、SEM、TEM、XRD等测试手段对材料组成及微观结构进行表征.从SEM、TEM及氮气吸附脱附分析可以看出,通过氧化碳化直接得到的MnO2@BGO复合材料,MnO2分布均匀,比表面积达605 m2/g.此复合材料与未经氧化剂浸渍得到碳材料(BGO)相比,更多的保留了叶片原有的叶脉结构和孔隙,孔径分布较窄,平均孔径为3.7nm.从AMF分析可以看出,MnO2@BGO复合材料类似二维纳米膜,得到的片层厚度最薄<1.23 nm,最厚≯5.65 nm,平均厚度2.57 nm.XPS分析表明,C存在形式以C=C为主,表明材料石墨化程度较高,属于仿生石墨烯.电化学性能分析表明,在电流密度在1 A/g时,该材料所做电极比电容为387 F/g.  相似文献   
870.
以一类新的单时滞Rucklidge系统为分析对象,通过计算时滞系统的平衡点,分析该系统在各平衡点的稳定性和Hopf分岔的存在性,得到其发生Hopf分岔的条件。Matlab多组数值仿真验证了理论分析的正确性。基于此设计了一种可切换时滞与非时滞的混沌电路,并运用Multisim14.0进行仿真,实验结果表明,该电路可行且有效。  相似文献   
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