Catalyst Product List and Ranking from 79 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

Catalyst Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. プラスネット Kyoto//Information and Communications
  2. 日本光触媒センター Tokyo//others
  3. チタンネクストジャパン Tokyo//Other construction industries
  4. 4 信越化学工業 Tokyo//Building materials, supplies and fixtures manufacturers
  5. 5 英商事 本社 Aichi//others

Catalyst Product ranking

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. Next-generation photocatalyst "AMATERAS" プラスネット
  2. Sagan Court General Catalog 日本光触媒センター
  3. Activation catalyst "Tank Tiger" 東亜プロパン商事
  4. Photocatalytic coating liquid "Tersus/Scutum" 信越化学工業
  5. 4 [Technical Data] Kasumi Catalyst - Low-Temperature Chemical Decomposition Carbonization 英商事 本社

Catalyst Product List

16~30 item / All 177 items

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Natural Environment Radiation Catalyst "Advance Coat Series"

A lineup of anti-mold, antibacterial, deodorizing coatings, and super hydrophilic dirt-repellent coatings!

The "Advance Coat Series" is a natural environmental radiation catalyst suitable for anti-mold, anti-soil, deodorization, and antibacterial purposes, which activates even without light. Based on the oxygen and moisture in the air, it generates active oxygen powerfully through a catalytic reaction, breaking and decomposing the molecular bonds of organic substances and bacteria it comes into contact with due to its strong oxidative power. It transforms into harmless carbon dioxide and water, demonstrating excellent effectiveness, and can be coated on metals, resins, glass, ceramics, and more. 【Features】 ■ High effectiveness even without light ■ High antibacterial effect with "0" toxicity ■ High adhesion without damaging the substrate ■ Long-lasting and stable effectiveness ■ Can be applied to various materials and locations *For more details, please refer to the PDF document or feel free to contact us.

  • Safety and consumables
  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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What is a photocatalyst?

Considerate of the environment, safe and secure! It decomposes and removes organic matter, demonstrating anti-soiling, deodorizing, and antibacterial effects.

"Photocatalysts" are materials that decompose organic substances when exposed to light, exhibiting effects such as anti-fouling, deodorization, and antibacterial properties. When titanium dioxide is exposed to light (ultraviolet), electrons (e-) and holes (h+) are generated. These electrons and holes react with oxygen and water in the air, producing reactive oxygen species such as superoxide anion (O2-) and hydroxyl radicals (·OH) on the surface of titanium dioxide. These reactive oxygen species possess strong oxidative power, removing and decomposing organic substances, thereby demonstrating anti-fouling, deodorization, and antibacterial effects. As a material that exhibits photocatalytic effects, titanium dioxide, which is chemically stable, has been widely used as a white pigment for a long time and is also a safe substance used in cosmetics and pharmaceuticals as a bulking and molding agent. *For more details, please refer to the PDF document or feel free to contact us.

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Dr. OHNO develops "visible light responsive titanium oxide nanomaterials."

We have developed a "visible light responsive titanium dioxide nanomaterial" that reacts with high performance even under weak indoor lighting!

In the development of indoor high-performance titanium dioxide, there was a significant issue that needed to be resolved. The oxidation and reduction reactions (opposite reactions) were occurring simultaneously on the surface of the photocatalyst, leading to a substantial decrease in performance due to the reverse reaction. Furthermore, the photocatalytic effect could only be activated by ultraviolet light, rendering it ineffective under indoor lighting. In response, a research team led by Professor Yokono began developing next-generation titanium dioxide materials that can exhibit photocatalytic functions under indoor light (such as LED light sources) that contains no ultraviolet rays. They developed "visible light-responsive titanium dioxide nanomaterials" that perform highly efficiently even under weak indoor lighting. *For more details, please refer to the PDF document or feel free to contact us.*

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Interior deodorizing and antibacterial photocatalyst "Smilight"

The photocatalyst is effective even with indoor LEDs!

"Smilight" is an interior deodorizing and antibacterial photocatalyst that can completely deodorize and antibacterialize indoor spaces using regular light sources (LEDs and fluorescent lights) that are typically used in daily life. Unlike previous products that required ultraviolet light or high illuminance, this product can be effective even at an illuminance of around 500 lux. We provide a safe and healthy living environment for children. 【Features】 ■ Always comfortable indoor spaces with regular daily activities ■ A safe and healthy home for children ■ Long-lasting deodorizing and antibacterial effects ■ Establishment of new technology that can be produced at low cost *For more details, please download the PDF or feel free to contact us.

  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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Visible light responsive photocatalyst "RuneCat®"

Deodorizing and odor-preventing effects through exposure to light! With the rise in hygiene awareness, indoor use is gaining attention!

We would like to introduce our visible light-responsive photocatalyst, "RunekyatⓇ." A photocatalyst is a functional material that, when exposed to light, not only has deodorizing and odor-preventing effects but also suppresses the growth of bacteria and the activity of viruses. While it has mostly been used outdoors until now, there is increasing attention on its use indoors due to rising hygiene awareness. 【Features】 ■ Unique technology development by Toshiba Materials Co., Ltd. ■ Uses tungsten trioxide (WO3) as the photocatalytic component ■ Good responsiveness to indoor lighting such as fluorescent lamps and LEDs, making it suitable for indoor use ■ Effectiveness lasts as long as the photocatalyst remains (Note: If there are many substances such as tobacco tar or dirt on the photocatalyst surface, you may not experience the effects.) *For more details, please refer to the PDF document or feel free to contact us.

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  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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Photocatalyst "SK Series"

Colorless and transparent photocatalyst with enhanced rust and corrosion resistance!

The "SK Series" is a photocatalyst that excels in rust and corrosion prevention. As it is a visible light-responsive photocatalyst, it provides sufficient effectiveness even with low ultraviolet light. Additionally, it meets food additive safety standards, making it a safe and secure product. 【Features】 ■ Excellent rust and corrosion prevention ■ High effectiveness even with low ultraviolet light ■ Safe and secure ■ Colorless and transparent *For more details, please download the PDF or feel free to contact us.

  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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Outdoor Type Miracle Titanium Photocatalyst Coat 'M2'

Prevent dirt on exterior walls, signboards, etc.

"M2" is an outdoor type of miracle titanium photocatalytic coating. 【Features】 ■ Can be applied to existing buildings and equipment ■ Less likely to compromise the aesthetic of the substrate ■ Inorganic water-soluble and excellent weather resistance ■ Provides self-cleaning effect ■ Algae prevention effect ■ Nitrogen oxide removal performance *For more details, please refer to the PDF document or feel free to contact us.

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Comparison between conventional photocatalysts and nano-titanium dioxide.

No binder needed! We compared conventional photocatalysts with Nano Titan Pro.

A photocatalyst is a substance that generates a strong oxidative power when exposed to light, such as sunlight, and removes organic substances like organic matter and bacteria that come into contact with it, serving as an environmental purification agent. As a representative example, titanium dioxide particles are widely known, but they cannot self-bond to the substrate material, so it is necessary to mix in a binder, such as an adhesive, to bond them to the substrate. When comparing conventional photocatalysts with a dispersion of titanium dioxide nanoparticles, "nanotita pro," on substrates such as metal, wood, plastic, and fabric, it was found that titanium nanoparticles bond due to quantum forces, eliminating the need for a binder. The PDF document below introduces this with diagrams. Please feel free to download and take a look. *For more details, please refer to the PDF document or feel free to contact us.*

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Mold removal and prevention construction using the "On-site Special Mixing Treatment MAD Method."

Aren't you giving up on "mold" and "stains"? We will introduce the mold removal process with before and after photos.

Oceans Co., Ltd. offers mold removal and prevention services using the "On-Site Special Mixing Treatment MAD Method." The "MAD Method" is not just a cleaning technique; it is a regenerative cleaning method. It does not involve scrubbing with brushes or using mold prevention disinfectants or bleach. If you have tried various methods but still cannot remove those "stains you have given up on," it is worth trying our service. Please feel free to consult with us first. 【Features】 ■ Safe and Secure - Minimizes damage to materials and uses only safe cleaning agents ■ Antimicrobial and Antimold Effects - Breaks down mold and dirt from the roots ■ Lower Cost than Repair - No large-scale construction required - If the cause is "dirt," it can be removed *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods
  • Special Construction Method

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Photocatalytic material "Titanistar(R)"

A photocatalytic material based on titanium metal with excellent properties, enhanced with colorful hues!

"Chitanistar®" is a material that has been given "photocatalytic" properties through a unique oxidation technology applied to titanium metal. The "photocatalytic" layer is continuously formed from the surface to the interior of the titanium metal, resulting in superior adhesion compared to types that are coated onto various materials. Additionally, the material can be processed into various shapes of titanium metal, including sheets, meshes, and beads, and can also be regenerated, making it suitable for a wide range of applications. 【Features】 ■ Excellent deodorizing, antibacterial, and anti-soiling effects ■ High hydrophilicity of the surface makes it suitable for long-term outdoor use ■ Lightweight, strong, highly corrosion-resistant, and non-magnetic ■ Excellent design properties, allowing for wide application in various locations ■ Can be processed into various shapes of titanium metal *For more details, please download the PDF or feel free to contact us.

  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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Short-term antibacterial ability of the photocatalytic material "Titanistar(R)"

Introducing the short-term antibacterial capabilities of photocatalytic Titanister!

We report the antibacterial test results against Escherichia coli (E. coli) using the photocatalytic material "Titanistar®." In the photocatalytic industry, tests typically last around 3 to 5 hours; therefore, we confirmed the superiority of the antibacterial reaction through a test with a short ultraviolet lamp exposure time of 1 hour. 【Results of the antibacterial test with 1 hour of ultraviolet exposure】 This time, we conducted an antibacterial test with an exposure time of 1 hour. Using a strain of E. coli, we performed the antibacterial test using the film adhesion method at a concentration of 2.5×10^S, with 1 mW/cm² BLB irradiation. The test area consisted of titanium plates treated with Titanistar, while the control area consisted of untreated pure titanium plates. After 1 hour, we could not detect any bacteria on the Titanistar-treated plates. In contrast, the number of bacteria on the untreated titanium plates showed little change. This indicates that Titanistar has a high photocatalytic ability. *For more details, please refer to the PDF document or feel free to contact us.

  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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Photocatalytic material "Titanistar(R)" [Technical approval from a UN agency]

Awarded technical approval from the United Nations Industrial Development Organization (UNIDO)!

The technology of the photocatalytic material "Titanistar(R)" has received technical approval from the United Nations Industrial Development Organization (UNIDO). The technical review was conducted by a third party, evaluating our photocatalytic technology based on almost all available documentation, and included on-site verification of the operational status at user locations utilizing Titanistar for water purification. Additionally, our corporate information was also reviewed as part of the award process. In response to this, we exhibited at the COVID7 (Japan-Africa Business Technology Forum) from the UNIDO booth. *For more details, please refer to the PDF document or feel free to contact us.*

  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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Photocatalyst "Titanistar": Performance in Liquid Phase Reaction System

Fading of colored components in livestock wastewater and antibacterial performance! Introduction to tests conducted at the Kyoto Prefectural Livestock Research Institute.

We will introduce the performance of the liquid-phase reaction system of the photocatalyst "Titanistar." ■ Decolorization of colored components in livestock wastewater - Testing institution: Kyoto Prefectural Livestock Research Institute We conducted tests to decompose colored water components treated by the activated sludge method provided by the Kyoto Prefectural Livestock Center using Titanistar. We selected pure titanium mesh material and applied the MI-C type of Titanistar's liquid-phase reaction system for the test sample. The ultraviolet intensity was set at BLB 1mW/cm², and the decolorization of the colored water was measured using a color difference meter. The results showed that as the irradiation time increased, the water components gradually decomposed and became lighter. *For more details, please download the PDF or feel free to contact us.

  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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Photocatalyst "Titanistar": Alcohol Gas Decomposition Performance Test

Conducting cycle tests and measuring reaction products! Introducing the materials used and test results.

We will introduce the performance test of alcohol gas decomposition using the photocatalyst "Titanistar." 【Decomposition Performance of Various Alcohol Gases and Cycle Tests】 Base Material: Titanistar MI-W, Titanium plates 100mm square, and the same mesh 100mm square Gas Used: Ethyl alcohol and isopropyl gas, each at 100ppm In a 550ml quartz container, MI-W plate material and EtOH were sealed and irradiated with ultraviolet light at 1mw/cm², measuring the concentration every hour. After the concentration decreased to a certain level, a cycle test was conducted by sealing new gas to evaluate the durability performance of the photocatalytic film. Tests were also conducted using titanium mesh, IPA plates, and IPA mesh in the same manner. As a result, it was confirmed that various alcohols were decomposed, and the cycle test with new gas sealing also showed no significant difference in decomposition. For the titanium plates and mesh, it was confirmed that the mesh material with a higher surface area decomposed more quickly. *For more details, please download the PDF or feel free to contact us.*

  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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Photocatalyst "Titanistar": Performance of pure titanium non-woven fabric Titanistar.

Measurement of the decomposition of acetaldehyde gas and the concentration of reaction products.

The pure titanium metal has a non-woven fabric-like substrate. After processing pure titanium plates into fine wires, they are thermally fused into sheet form in an inert atmosphere. The same linear configuration was treated with Titanister on non-woven materials of different thicknesses, and the decomposition of acetaldehyde gas and the measurement of reaction product concentrations were conducted to clarify the differences. ■ Used substrates - 100mm square Non-woven Fabric A, linear 60μm, 400g/m2 - 100mm square Non-woven Fabric B, linear 60μm, 1200g/m2 Both were treated with Titanister MI-W, a gas-phase reaction system type, and used as test samples. For reference, Fabric A was processed with fine wires arranged in a flat manner at 400g per square meter. Performance tests were conducted on Titanister non-woven fabrics with three times the thickness difference. *For more details, please download the PDF or feel free to contact us.

  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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