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1.
为了寻找团簇Co3FeP的稳定性、结构和内部作用力等规律,利用密度泛函理论,在B3LYP/Lanl2dz的量化水平下对团簇Co3FeP进行理论计算,得到5种优化构型,并从化学反应热力学与动力学的角度对其异构化反应中的反应物、过渡态和生成物进行了讨论分析。结果表明,所有构型均为C1对称且构型的空间结构对其熵值有影响;构型的稳定性主要由金属原子与非金属原子所决定,并且在常温常压下构型1(3)、2(3)和3(3)可以稳定存在,是大部分异构化反应的最终产物。因此,在实际材料的开发中,不仅需要注意金属原子与非金属原子之间的作用力以确保构型的稳定性,还应首先考虑对稳定构型1(3)、2(3)和3(3)进行相关研究。  相似文献   
2.
Dopamine is an important neurotransmitter,and nonenzyme electrochemical sensor of dopamine detection based on highly active material is urgently demanded.In this work,an electrochemical sensor with high sensitivity and selectivity based on self-rolled TiO_2microscroll/graphene composite was developed and validated for dopamine sensing.The device exhibited a superior performance for dopamine detection with a detection limit of 4.25×10~(-9)mol L~(-1),and in the dopamine concentration range of 0.06–90μmol L~(-1),the oxidation currents increased linearly with the concentration.The remarkable performance enhancement was mainly ascribed to the increased surface area due to the porous surface of the TiO_2nanomembrane and highly conductive graphene therein.In addition,we have demonstrated that the sensor could be effectively used on detecting dopamine concentrations in urine samples.Our work demonstrates that the current microscroll-based device is promising in the field of real-time health monitoring for future human community.  相似文献   
3.
The effect of Al addition on microstructure and mechanical properties of hot extruded Mg–1 Mn alloy sheet was investigated. The results revealed that the dynamic recrystallization was promoted by increasing Al content. The ultimate tensile strength and yield strength of the alloy increased with the increase of Al content. The Mg–9 Al–1 Mn alloy exhibited the highest strength, with tensile strength of 308 MPa, 307 MPa, 319 MPa, yield strength of 199 MPa, 207 MPa, 220 MPa and the elongation of 20.9%, 20.1%, 19.2% in 0°, 45°, 90°, respectively.The high strength was mainly attributed to the formation of fine dynamically recrystallized grains and large amounts of the second phase. The strengthening mechanism of the alloys was explained.  相似文献   
4.
Microstructure, mechanical properties and wear resistance in an ultrafine-grained Al–Mg–Si alloy fabricated utilizing a combination of equal channel angular pressing (ECAP) and dynamic aging were investigated in this paper. The results indicated that the grain size of the ECAP alloy was significantly refined, i.e., to ~239 nm after three ECAP passes. Meanwhile, the yield and tensile strength of the ECAPed material reached 340 MPa and 445 MPa, respectively, while maintaining a significant uniform elongation of 14%. Wear resistance results demonstrated that the wear rate, wear depth and width of the ECAPed material decreased in comparison with the solution-treated (SST) and peak-aged (T6) conditions under a load range of 5–25 N. The adhesive wear that occurs in the undeformed specimens at 10 N does not appear in the ECAPed specimen at the same load, indicating that the ECAPed specimen delay the appearance of more serious wear mechanisms under certain loads. The cooperative interaction of high density nano-scale β" precipitates and dislocations resulted in a combination of super-high strength and good work hardening ability which suppressed the extension of cracks between the friction layer and the plastic deformation zone. As a consequence, the combination of ECAP and dynamic aging brings a significant improvement for antifriction performance of the 6061 aluminum alloy.  相似文献   
5.
高通量材料合成方法和高通量材料表征手段区别于传统低效率的 "试错法"材料发展方法, 极大地加速了材料科学的变革和发展. 通过设计程序进行了高通量 X 射线衍射实验, 在保证数据分辨率条件下, 高效地表征了 La$_{1-x}$Sr$_{x}$TiO$_{3}$ 薄膜上多个数据位点的晶体结构, 验证了其成分的连续变化性质, 为后续开展更多类型的高通量 X 射线衍射实验提供了指导.  相似文献   
6.
结构面间距是岩体稳定性和力学特性分析中的一个重要参数,在岩石力学、采矿工程、边坡监测等领域的数值计算中广泛应用.本文以岩体边坡露头为研究对象,基于非接触测量获得的三维点云数据,提出一种基于密度聚类的结构面细化分类方法;在结构面粗略分组提取的基础上,通过投影变换、散乱点拟合等算法,求得结构面间距和岩体体积节理数.设计开发了结构面细化分类及间距等参数计算与分析原型系统,实际案例分析表明,本文方法可有效实现结构面的自动细化分类,并能够计算出间距等相关参数,可为岩体质量分级和岩体稳定性分析等提供方法支撑.  相似文献   
7.
基于异烟肼分子结构中的酰肼基具有较强的还原性,可将Fe~(3+)还原为Fe~(2+),选择水合红菲绕啉二磺酸钠作为Fe~(2+)的显色剂,建立了可见分光光度法测定异烟肼的新方法.在最佳实验条件下,异烟肼的浓度在0.04~3.2μg·mL-1范围内符合比尔定律,表观摩尔吸光系数ε=1.14×104 L·mol~(-1)·cm~(-1),检测限为0.033μg·mL~(-1).方法可用于异烟肼片剂和尿样中异烟肼含量的测定.  相似文献   
8.
3D bioprinting has been developed as a promising technology in a wide variety of biomedical applications. However, the successful implementation of bioprinting is still heavily restricted by the relatively narrow range of printable and biocompatible materials. Recently, many comprehensive reviews of the main bioprinting methods, commonly used bioprinting materials and the trending bioprinting applications have been carried out. In this review, we focused on the trends in the development of materials for 3D bioprinting. The significance and recent advances of ECM-based materials, multi-material and stimuli-responsive materials for bioprinting were summarized successively. Moreover, the challenges in current studies and future perspectives of materials for 3D bioprinting were discussed.  相似文献   
9.
Introduction3D garment CAD tools are increasingly required byclothing industries to assist the cloth design andmanufacturing process for quick response when faced withrapidly changing in style and fabrics with variable materialproperties. In the context of virtual prototyping, modelingand simulation of garment fitting to mannequin areattracting more and more people from both research andindustrial communities.Different approaches and techniques can be used…  相似文献   
10.
用动电位极化和恒电位极化法研究了A3碳钢在不同浓度NaCl的0.5mol/LNaHCO3溶液中亚稳态孔蚀行为。实验发现亚稳态电流波动峰具有快速上升、缓慢下降的特点。亚稳孔出现电位Em 服从正态分布,随着Cl-浓度的提高,Em 值向负方向移动。亚稳孔的峰频变化规律与电位关系不大。恒电位极化时,当电位高于Em而大大低于孔蚀电位Eb 时,电流波动保持一定时间后会最终消失,并产生直径为微米级的小蚀孔。当电位接近孔蚀电位时,一段时间的电流波动后电流往往迅速上升,最终转变为稳定蚀孔.  相似文献   
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