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261.
Fabricating a low‐cost and highly efficient electrocatalyst is of importance for the development of renewable energy devices. In this work, we have synthesized an ultrafine cobalt oxide nanocatalyst (5–10 nm) doped with boron (BC/Co3O4) by using a metal–organic framework as a precursor, which exhibits an excellent catalytic activity for oxygen evolution reaction (OER). Owing to the improvement of accessible active sites by boron doping, the synthesized catalyst can reach a current density of 10 mA cm?2 at 1.54 V with a low overpotential of 310 mV, superior than those of commercial RuO2 and N‐doped C/Co3O4. This work provides a facile way to develop highly efficient catalysts for electrochemical reactions.  相似文献   
262.
Zou  Donglin  Chen  Keyu  Rao  Zhushi  Cao  Junyi  Liao  Wei-Hsin 《Nonlinear dynamics》2022,108(2):857-871

In this study, a novel quad-stable energy harvester (QEH) is developed, in which its coordinates of equilibrium points can be user-defined like programming. This programmable feature distinguishes the proposed QEH from all reported magnet-type or buckling-type vibration energy harvesters. It has the advantage that it is easy to develop a high-performance QEH by appropriately programming these coordinate points and customizing a personalized QEH for different vibration environments. The dynamic model is established by the Ritz method and the Lagrange equation. The analytical steady periodic response is obtained by the average method. When the excitation acceleration is 2 m/s2, the peak power is 575 μW at 8.5 Hz. Also, the influence of the coordinate arrangement of the equilibrium points on the energy harvesting performance is studied. A formula that can quickly determine the equilibrium point coordinates is given, and the QEH designed according to this formula has superior performance. At last, the performance of the designed QEH is compared with other reported vibration energy harvesters. It shows that the QEH has a high average output power (287 μW), high normalized power density (59.8 μW/cm3/g2), and wide operating frequency range (8.4 Hz) among these harvesters.

  相似文献   
263.
In the present work, the extraction process of total flavonoids (TFs) from X. sorbifolia flowers by ultrasound-assisted extraction was optimized under the response surface methodology (RSM) on the basis of single-factor experiments. The optimal extraction conditions were as follows: ethanol concentration of 80%, solid–liquid ratio of 1:37 (g/mL), temperature of 84 °C, and extraction time of 1 h. Under the optimized conditions, the extraction yield of the TFs was 3.956 ± 0.04%. The radical scavenging capacities of TFs against 2,2-diphenyl-1-picrylhydrazyl (DPPH) and 2,2-azino-bis(3-ethylbenzothiazoline-6-sulphonic acid) (ABTS) were much greater than that of rutin. The results of antibacterial experiments indicated that the TFs displayed strong inhibitory activities on E. coli, S. aureus and Bacillus subtilis. Therefore, X. sorbifolia flowers can be used as a novel source of natural flavonoids, and the TFs have potential applications as natural antioxidants or antibacterial agents in the food and pharmaceutical industries.  相似文献   
264.
重氮化5-氨基-吡唑还原合成5-H-吡唑衍生物   总被引:1,自引:0,他引:1  
5-氨基吡唑类化合物,经重氮化后,在铜粉存在下,可高收率地生成相应的5-H-吡唑衍生物。研究证明,铜粉作为还原剂直接参与了反应。为考察反应的适用范围,选用含不同取代基的5氨基吡唑衍生物进行研究,结果表明,它们均能被还原,高收率地生成相应的还原产物。该方法操作简便、反应条件温和、时间短、产物易分离纯化。  相似文献   
265.
Nafion修饰玻碳电极伏安法测定痕量铟   总被引:3,自引:0,他引:3  
报道了一种用Nafion修饰玻碳电极测定痕量铟的新方法。研究了Na-fion膜的有关特性和测定的条件,当富集时间为5 min时,峰电流与In(Ⅲ)浓度在1×10-9~1×10-7mol/L的范围呈良好的线性关系,检出限为1.46×10-10mol/L。该法用于实际水样中痕量铟的测定,平均回收率为98.4%。  相似文献   
266.
采用高效液相色谱/串联质谱技术建立了快速鉴定Z型盐酸头孢吡肟原料药中E型异构体杂质的新方法。以乙腈-醋酸盐缓冲溶液(4∶96)为流动相经C18柱分离,通过高分辨电喷雾串联质谱在线检测,获得了相关的色谱和质谱信息。在所建立条件下,Z型盐酸头孢吡肟及其E型异构体杂质获得了有效分离,保留时间分别为5.22 m in和14.60 m in,同时它们的二级质谱及裂解方式呈现明显差异。本法能在无对照品情况下,快速、准确地分离鉴定盐酸头孢吡肟原料药中的Z/E异构体。  相似文献   
267.
铟封前后透射式GaAs光电阴极光谱响应特性的测试与分析   总被引:2,自引:0,他引:2  
利用自行研制的光谱响应测试仪工程化样机,对透射式GaAs光电阴极在高温激活结束、低温激活结束以及铟封成管后的光谱响应特性进行了测试。结果显示,铟封后阴极整个响应波段的光谱响应下降,长波响应受到最显著的影响,表现为800~815 nm之间长波响应大幅度衰减,截止波长和峰值波长向短波移动,峰值响应和积分灵敏度减小,最终的光谱响应曲线变得平坦。阴极参量的计算结果反映铟封后阴极的表面逸出几率降低,说明铟封引起阴极表面激活层发生变化,使得能量较低的长波段光生电子不容易逸出,阴极长波响应和灵敏度随之降低。进一步分析了铟封过程中影响阴极表面激活层的因素。  相似文献   
268.
Hot carrier (HC) cooling accounts for the significant energy loss in lead halide perovskite (LHP) solar cells. Here, we study HC relaxation dynamics in Mn-doped LHP CsPbI3 nanocrystals (NCs), combining transient absorption spectroscopy and density functional theory (DFT) calculations. We demonstrate that Mn2+ doping (1) enlarges the longitudinal optical (LO)–acoustic phonon bandgap, (2) enhances the electron–LO phonon coupling strength, and (3) adds HC relaxation pathways via Mn orbitals within the bands. The spectroscopic study shows that the HC cooling process is decelerated after doping under band-edge excitation due to the dominant phonon bandgap enlargement. When the excitation photon energy is larger than the optical bandgap and the Mn2+ transition gap, the doping accelerates the cooling rate owing to the dominant effect of enhanced carrier–phonon coupling and relaxation pathways. We demonstrate that such a phenomenon is optimal for the application of hot carrier solar cells. The enhanced electron–LO phonon coupling and accelerated cooling of high-temperature hot carriers efficiently establish a high-temperature thermal quasi-equilibrium where the excessive energy of the hot carriers is transferred to heat the cold carriers. On the other hand, the enlarged phononic band-gap prevents further cooling of such a quasi-equilibrium, which facilitates the energy conversion process. Our results manifest a straightforward methodology to optimize the HC dynamics for hot carrier solar cells by element doping.

Mn doping modulates the hot carrier dynamics in all-inorganic lead halide perovskite nanocrystals according to the excitation energy.  相似文献   
269.

In rock grouting, idealized 2D-radial laminar flow of yield stress fluids (YSF) is a fundamental flow configuration that is used for cement grout spread estimation. A limited amount of works have presented analytical and numerical solutions on the radial velocity profiles between parallel disks. However, to the best of our knowledge, there has been no experimental work that has presented measured velocity profiles for this geometry. In this paper, we present velocity profiles of Carbopol (a simple YSF), measured by pulsed ultrasound velocimetry within a radial flow model. We describe the design of the physical model and then present the measured velocity profiles while highlighting the plug-flow region and slip effects observed for three different apertures and volumetric flow rates. Although the measured velocity profiles exhibited wall slip, there was a reasonably good agreement with the analytical solution. We then discuss the major implications of our work on radial flow.

  相似文献   
270.
邹平  吕丹  徐桂英 《物理学报》2020,(5):182-189
采用高压烧结技术制备了稀土元素Tb掺杂的n型Bi2Te2.7Se0.3基纳米晶块体热电材料.将高压烧结成型的样品于633 K真空退火36 h.研究了Tb掺杂量对样品的晶体结构和热电性能的影响.结果表明,高压烧结制备的样品为纳米结构, Tb掺杂使样品的晶胞体积变大,功率因子增大,热导率降低,从而使ZT值提高.Tb掺杂量为x=0.004是最优的掺杂量,该掺杂量的高压烧结样品经退火处理后,于373 K时ZT值达到最大为0.99,并且在323-473 K范围内, ZT值均大于0.8,这对用于温差发电领域具有重要意义.  相似文献   
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