What Is Quaternary-Compound Tungsten Electrode(WX4)?

tungsten-electrode-image

The emergence of quaternary-compound tungsten electrode, which also called WX4, marks a new area of tungsten electrode material, as well as a revolutionary development of the relevant technology, making the reliability and stability of the electrodes further improved. In 2017, based on the Tri-mix composite rare earth technology, China’s researchers continued to break through the technical barriers and are the first one to add four kinds of different rare earths to tungsten, e.g. lanthanum, cerium, zirconium, and yttrium.  

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Tungsten Copper Composite Material as Electrical Contact

tungsten copper electrical contact image

Tungsten copper composite material is widely used to produce electrical contact.

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Simple Preparation of W-Doped VO2 Phase Transition Powder via APT

Image of VO2 applied in chips

Vanadium dioxide (VO2) is widely applied in the fields of intelligent energy windows coating, optical switching devices, optical data storage medium, electrodes for electrochromic, lithium batteries and supercapacitors. VO2is a reversible first-order metal-insulator transition (MIT) at a critical temperature (Tc). VO2 is a monoclinic structure (M), and presents semiconductive and relatively infrared transparent below Tc, whereas it transforms into tetragonal structure (R), and presents metallic and infrared reflection above Tc. However, the high critical transition temperature of VO2 material (about 68 °C) limits its application.

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Cr-doped APT for Production of WC-CO Cemented Carbide

SEM image of Cr-doped APT powder
The cemented tungsten carbide hard metals have been widely used in machining, cutting, mining, and drilling tools as well as for wear-resistant equipment. Their wide application stems from their combination of desirable properties, including large hardness, wear-resistance, and fracture toughness values.

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WO3-TiO2 Catalysts Obtained From APT for Pyrolysis of Cottonseed Oil Dregs

Image of cottonseed oil
Biofuels have emerged as an alternative to replace fossil fuels used for energy, heat, and transport, which account for 80% of total global energy use. The growth in energy demand has intensified the search for alternative sources to replace oil, minimizing the emission of pollutants.

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NiW HDS Catalysts Produced Using APT Targeting 4,6-DMDBT

Image of HDS activity vs. Ni/W ratio
The production of clean fuels with sulfur content less than 10 ppm is of very importance due to the increasingly stringent environmental legislation requirements. The conventional hydrodesulfurization (HDS) catalysts, MoS2 or WS2 clusters supported on γ-alumina (γ-Al2O3) with the promoter of Ni or Co species, were widely used in oil refinery. It was suggested that deep HDS of the highly refractory 4,6-dimethyldibenzothiophene (4,6-DMDBT) required that HDS catalysts have relatively high hydrogenation ability. 

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Tungsten-Doped Vanadium Oxide Composites Fabricated with APT for Lithium Battery Application

ESEM image of VO2/W4

Lithium-ion batteries (LIBs) have played an important role as the main source of power for various industries such as electric vehicles (EV) and solar energy storage tanks. LIBs have many advantages such as long cycle life, high power density and relatively low discharge speed. As the electric vehicles (EV) is growing massively in China and USA, however, the storage capacity has limited the driving range greatly.

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Ni-WC/C Catalyst Synthesized From Ammonium Paratungstate for Urine Fuel Cell

Image of XRD patterns of as-prepared catalysts

As global warming and climate change caused by fossil fuel grew to be a public concern, find a clean and sustainable substitute energy had become a scientific hotspot. Urea is a hydrogen carrier which makes it a feasible energy source. The urea-rich wastewater or urine which normally contains 0.33 M urea were used as fuels, which can generate electricity while processing wastewater to reduce water pollution and others. Moreover, It is considered to have a great application in aerospace to recycle the urine produced by astronauts.

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Bifunctional Catalysts Based on Tungsten Oxide Obtained Using Ammonium Paratungstate

image of n-Heptane conversion over PWZ catalysts

Catalysts based on zircon oxide modified by tungsten oxide have attracted much interest in the last years due their promising application in reactions of great industrial importance, such as n-alkanes isomerization and alkylation process. The catalytic behavior of these catalysts is still not totally comprehended.

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Electrochromic Device Based on Tungsten Oxide Prepared From Ammonium Paratungstate

FESEM image of tungsten oxide film

Tungsten trioxide (WO3), as a typical transition metal oxide, receives extensive attention because of its great potential applications in chromogenic, gas sensor , photocatalysis and batteries. Electrochromism is the phenomenon that a material can change its optical properties reversible by application of an electric field.

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