Methylene Blue Degradation by Nano Tungsten Trioxide Photocatalyst

methylene blue degradation by nano tungsten trioxide photocatalyst image

Compared with titanium dioxide, tungsten trioxide (WO3) nano-powder can efficiently photocatalytically degrade methylene blue due to its narrow band gap, which can only absorb ultraviolet light. However, the technical problem of photocatalytic degradation of methylene blue by tungsten trioxide is to select catalysts with high catalytic activity.

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Tungsten Oxide Nanowires Preparation by Low Temperature Hydrothermal Method

tungsten oxide nanowires preparation image

Tungsten oxide is a typical transition metal oxide with a band gap of 2.4-2.8eV. It belongs to a typical n-type semiconductor. Tungsten-based oxides not only act as catalysts, electrochromic, battery electrodes, solar energy absorbing materials and invisible materials, but also have the properties of pressure sensitive, thermal sensitive and gas sensitive semiconductor functional materials.

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Tungsten-Titanium Heterostructure Material -- Smart Window Coating Material

tungsten-titanium heterostructure materials image

Tungsten trioxide is not only a kind of n-type semiconductor material, but also a kind of "d0" oxide. This dual identity makes tungsten trioxide have catalytic, optical and electrical properties at the same time, making it a basic material for industrial manufacturing such as smart windows, electronic packaging, secondary lithium batteries, gas sensors and so on.

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Rod-shaped Tungsten Trioxide Nano Gas Sensitive Material

rod-shaped tungsten trioxide nano gas sensitive material image

Gas-sensitive materials refer to a class of gas-sensitive materials. Usually, the resistance of these materials varies with the surrounding gas environment. Using the so-called selectivity and sensitivity, it can not only distinguish different kinds of gases, but also identify the concentration of specific gases. At present, the sensitive components made of gas-sensitive materials have entered the practical stage in the petroleum, chemical industry, coal mine, automobile manufacturing, electronics, power generation and other industrial departments, as well as environmental monitoring, residential harmful gas alarm, national defense and other departments.

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Titanium Dioxide-Tungsten Trioxide Composite Photocatalyst

titanium dioxide-tungsten trioxide composite photocatalyst image

Semiconductor-catalyzed photocatalytic degradation of organic pollutants has become an ideal technology for environmental pollution control due to its unique properties such as complete mineralization of various organic pollutants and no secondary pollution by direct use of sunlight at room temperature. At present, photocatalytic semiconductors, such as titanium dioxide, SnO2, CdS and ZnO, are widely studied and used.

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Silver Carbonate-Silver-Tungsten Trioxide Ternary Composite Z-type Photocatalyst

silver carbonate-silver-tungsten trioxide ternary composite z-type photocatalyst image

The application of semiconductor photocatalyst in the degradation of toxic and harmful organic pollutants is of great significance for solving environmental pollution. However, broadband gap and low quantum efficiency are still the "bottlenecks" of photocatalysts. Therefore, the development of semiconductor heterojunctions is also an effective way to solve these problems, which can expand the spectral range of light absorption and inhibit the recombination of photoelectrons and holes.

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Ammonium Metatungstate Preparation from Tungsten Oxide Waste

ammonium metatungstate preparation from tungsten oxide waste image

Ammonium metatungstate is an important tungsten-containing compound. It is mainly used to produce various petrochemical catalysts and other tungsten compounds. It is the main raw material of tungsten-based catalysts in refineries. With the development of petroleum refining and petrochemical industries, the amount of ammonium metatungstate is increasing.

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Tungsten Trioxide-Polypyrrole-Graphene Composites Synthesis

tungsten trioxide-polypyrrole-graphene composites synthesis image

Tungsten trioxide is a stable n-type semiconductor material, which has been widely used in gas sensors and electrochemical catalysis. In recent years, some studies have applied tungsten trioxide to electrochemical energy storage. Studies have shown that tungsten trioxide and graphene aerogel composites can exhibit excellent capacitance performance.

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Tungsten Disulfide Coating Used in Bearing Processing

tungsten disulfide used in spherical bearing processing image

Bearing, the important basic part of mechanical equipment, plays an important role in fixing and reducing the friction coefficient of load during the mechanical transmission. Tungsten disulfide coating is used in bearing processing to reduce the internal wear of the part.

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Tungsten Disulfide Solid Lubricant

tungsten disulfide powder image

Tungsten disulfide with lamellar structure is an excellent solid lubricant with good lubricant performance. It has many advantages in lubrication, so it is widely used in the fields of electronics, food, medicine, space machinery, etc.

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