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51.
Milinda Pattanayak Md Nadim F Hoque Zhaoyang Fan Ayrton A. Bernussi 《Science and Technology of Advanced Materials》2018,19(1):693-701
We report large amplitude modulation waveforms as large as ~ 10 V using vanadium dioxide micro-channel devices operating under current-controlled conditions. The self-sustained electrical oscillations were generated by controlling the applied current in the negative differential resistance region of the investigated devices. An appropriate value of internal capacitance was achieved as parasitic capacitance in the device structure to stabilize the electrical oscillations. This eliminates the need of an external pulsed source or any external passive component connected to the micro-channel devices. Amplitude and frequency of the oscillation were tuned by illuminating the device micro-channel with an external laser. An equivalent circuit model was developed to simulate the waveforms. A good agreement between experiment and simulation was verified. 相似文献
52.
The titanium carbides are potential candidates to achieve both high hardness and refractory property. We carried out a structural search for titanium carbides at three pressures of 0 GPa, 30 GPa and 50 GPa. A phase diagram of the Ti-C system at 0 K was obtained by elucidating formation enthalpies as a function of compositions, and their mechanical and metallic properties of titanium carbides were investigated systematically. We also discussed the relation of titanium concentration to the both mechanical and metallic properties of titanium carbides. It has been found that the average valence electron density and tractility improved at higher concentrations of titanium, while the degree of covalent bonding directionality decreased. To this effect, the hardness of titanium carbide decreases as the content of titanium increases. Our results indicated that the titanium content significantly affected the metallic properties of the Ti-C system. 相似文献
53.
54.
Marijana Đaković 《Crystallography Reviews》2020,26(2):69-100
Designing crystalline solids with improved properties or performances remains a challenging task, despite great strides that have been made within the field of crystal engineering since its birth several decades ago. Herein, we are bringing examples that illustrate recent successes in taking supramolecular synthetic guidelines from the organic crystal engineering and adjusting those to metal-containing systems, particularly to the lower-dimensional ones. The versatility of calculated molecular electrostatic potential (MEP) as a new crystal engineering tool is demonstrated. 相似文献
55.
56.
ABSTRACT Aqueous solutions of 4,4′-(1,2-ethanediyldinitrilo)bis-(2-pentanone) (EDDBP) have been used in a novel green procedure for the physical modification of silica gel (SG) for solid-phase extraction and preconcentration of Ni(II) ion. Optimization experiments were carried out at 301 ± 1 K by batch technique. The EDDBP-modified SG was characterized using X-ray Diffraction Spectroscopy (XRD) and Brunaeur-Emmett-Teller (BET) determinations. The adsorption isotherm and kinetic models indicated a physisorption process. The modified SG showed moderate to high adsorption capacity values for Ni(II) ion (~98% removal efficiency) at pH 8. A sorption mechanism for Ni(II) chelation with EDDBP-modified-SG was proposed. These results suggest the procedure has advantages. 相似文献
57.
Wenping Zou Khoa Le Prof. Melissa L. Zastrow 《Chembiochem : a European journal of chemical biology》2020,21(9):1356-1363
CreiLOV is a flavin-binding fluorescent protein derived from the blue-light photoreceptor protein family that contains light-oxygen-voltage (LOV) sensing domains. Flavin-binding fluorescent proteins represent a promising foundation for new fluorescent reporters and biosensors that can address limitations of the well-established green fluorescent protein (GFP) family. Flavin-binding fluorescent proteins are smaller than GFPs, are stable over a wider pH range, offer rapid chromophore incorporation, and are oxygen-independent so can be applied to live anaerobic organisms. Among the flavin-binding fluorescent proteins, CreiLOV has a high quantum yield and excellent photophysical properties, making it promising for cellular applications. Here, we investigated the suitability of CreiLOV as an intensity- and fluorescence-lifetime-based metal sensor. CreiLOV selectively binds copper(II) over other biologically relevant metals with low-micromolar affinity, resulting in fluorescence quenching and a decrease in the fluorescence lifetime that can be observed in cuvettes and live bacterial cells. 相似文献
58.
套管屈服强度直接影响套管抗挤压性能,套管在加工孔过程中可能诱发孔眼附近材料发生金属相变,导致套管屈服强度不再均匀分布,进而影响套管抗挤压强度。在相同工况下,对比了P110完整套管和机加工孔套管的抗挤压强度,以此为参照组分析了相变区域面积和相变区域屈服强度对机加工孔套管抗挤压强度的影响。结果表明,机加工孔会改变材料屈服强度,进而影响套管抗挤压性能。随金属相变区域屈服强度减小,机加工孔套管抗挤压强度减弱;当金属相变区域屈服强度增大时,机加工孔套管抗挤压强度增强。且机加工孔套管相变区域面积对机加工孔套管抗挤压强度的影响随相变区域屈服强度增加而逐渐削弱。 相似文献
59.
相对于传统热轧、温轧、冷轧,深冷轧制是一项变革性技术,它利用某些金属材料在深冷情况下具有优异的塑性变形能力以及深冷环境阻碍塑性变形过程中位错运动和再结晶行为,促使材料晶粒细化,材料具有更高的强度与韧性。系统地介绍了近年来深冷轧制制备高性能金属材料的研究进展,包括深冷轧制在铝合金、铜合金、钛合金、复合层状金属带材中的应用。对深冷轧制制备高性能金属材料的研究进行了展望。 相似文献
60.
针对现阶段土壤中重金属污染较为严重的问题及各类修复方法各有利弊的现状,分析了近年来相关学者对于改良剂对重金属污染根际土壤理化性质影响的研究进展,研究了常见有机和无机改良剂对重金属胁迫下根际土壤pH值、氧化还原电位(Eh)、酶活性、化学性质、微生物菌落种群等理化性质的影响以及对重金属的化学沉淀和溶解平衡的影响。后期应加强超富集植物与一般植物根际、非根际理化性质的差异研究;土壤中重金属种类及污染程度与根际土壤理化性质的关系研究;土壤中其他环境因子的影响以及根际土壤中重金属的作用机理方面的研究。 相似文献