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Catalyst Product List and Ranking from 97 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Jan 07, 2026~Feb 03, 2026
This ranking is based on the number of page views on our site.

Catalyst Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jan 07, 2026~Feb 03, 2026
This ranking is based on the number of page views on our site.

  1. イリス 東京本社、大阪支店、名古屋支店 Tokyo//Industrial Machinery
  2. 希少金属材料研究所 Okayama//Ferrous/Non-ferrous metals
  3. KANTO CHEMICAL CO., INC. Biochemical Dept Tokyo//Chemical
  4. 4 null/null
  5. 5 中部 Aichi//Trading company/Wholesale

Catalyst Product ranking

Last Updated: Aggregation Period:Jan 07, 2026~Feb 03, 2026
This ranking is based on the number of page views on our site.

  1. Hot stamp roller heat-type continuous heating furnace device イリス 東京本社、大阪支店、名古屋支店
  2. "TiO2 Alternative" Deodorizing Antibacterial Catalyst 'CLARUS-W' 希少金属材料研究所
  3. For food processing plants! Photocatalytic coating 'Nanozone Coat' 中部
  4. 4 (Petroleum-based) Liquid Fuel Active Catalyst Tank Tiger PS-1 エコアドバンスジャパン 本社、研究施設、製造工場
  5. 5 Mold Monitoring Device PLUS-E PE-700 [Free Demo Available!] ウシオライティング

Catalyst Product List

151~180 item / All 259 items

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Proposal for Utilizing Photocatalysts to Remove Pathogens and Viruses

Introducing various microbial tests and usage suggestions clearly using photos and diagrams.

This document is a proposal on the use of photocatalysts for the removal of pathogens and viruses. The active oxygen generated by indoor photocatalysts is generally at a very low concentration, so it cannot eliminate pathogens and viruses on its own. Therefore, our company has successfully enhanced this function by combining copper ions and silver ions generated from metal particles, as well as iodine, which we have already introduced on our website. [Contents] ■ Overview ■ Various Microbial Tests ■ Usage Suggestions ■ Airborne Measures ■ Wall Measures (General Wall) / (Wear Resistance Measures) *For more details, please refer to the PDF document or feel free to contact us.

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【Q&A】Photocatalyst

"How long does the effect last?" "You mentioned it reacts to light, but does it also react to LED?" and many others are included.

This document introduces the "Q&A about Photocatalysts." It includes questions such as, "What level of gloss reduction and color change can we expect from application?" and "Is it safe to apply on fabric materials like curtains and carpets?" as well as "Can we proceed with the application even if there are furniture and fixtures present?" Additionally, it features questions from our valued customers, such as "Common Q&A for indoor and exterior walls." We encourage you to read it. [Contents] ■ Q&A about Photocatalysts ■ Common Q&A for Indoor and Exterior Walls ■ Q&A No. 7 ■ Q&A No. 12 ■ Q&A No. 13 *For more details, please refer to the PDF document or feel free to contact us.

  • paint
  • Coating Agent
  • Catalyst

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[Information] A Simple Explanation of the Meaning of "Nano"

Please provide specific examples about nano and explain their meanings! Also, introduce topics such as 'the size of photocatalysts' and 'interparticle bonding strength'.

The term "nano" is circulating in the world, but it originally refers to a unit meaning "one billionth." Therefore, when you add "nano" to units like meters, seconds, liters, or grams, it indicates one billionth of that unit. However, for some reason, only the length unit with "nano" added to meters is receiving significant attention. One nanometer, commonly referred to as "1 nano," simply means one billionth of a meter. In this document, we will provide specific examples to explain its meaning. 【Contents】 ■ Overview ■ Example 1 ■ Example 2 ■ Example 3 ■ Size of photocatalysts ■ Interparticle bonding strength *For more details, please refer to the PDF document or feel free to contact us.

  • Coating Agent
  • paint
  • Catalyst

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[Data] Application of photocatalysts inside vehicles

Even inside the taxi! It has received positive feedback for completely eliminating any lingering scent, including strong perfume odors.

This document introduces the use of photocatalysts for deodorization inside vehicles. It explains the types of odors, points to consider regarding each odor when using photocatalysts, and their effects. Additionally, it includes case studies, making it a useful reference when considering implementation. We encourage you to read it. 【Contents】 ■ Odors and the effects of photocatalysts ■ Case studies ・Okinawa Prefecture: Nakazato Paint ・Tokyo: ADVINTAGE *For more details, please refer to the PDF document or feel free to contact us.

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Clean Fix Coating Application Qualification Certification Course

By following correct knowledge and proper procedures in construction, maximum effectiveness is achieved!

We offer the "Clean Fix Coating Application Qualification Certification Course." Those who complete this course will receive a certificate of completion, and their names and company names will be published on our website. We believe that having consistent product knowledge and application skills for Clean Fix among all contractors is essential for uniform application, which is why we established the Clean Fix Coating Application Certification System. *For more details, please refer to the PDF document or feel free to contact us.

  • Coating Agent
  • Catalyst

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Clean Fix Construction Case Study: Himeji Red Cross Hospital

Introducing examples of installations at reception counters in hospitals and curtains in patient rooms!

We would like to introduce a case where we performed "Clean Fix Construction." The construction site was Himeji Red Cross Hospital, where we implemented the service on the reception counter and the curtains in the patient rooms. Please feel free to contact us if you have any inquiries. 【Case Overview】 ■ Date of Construction: March 2021 ■ Location: Himeji Red Cross Hospital ■ Areas of Construction ・ Reception Counter ・ Curtains in Patient Rooms *For more details, please refer to the PDF document or feel free to contact us.

  • others
  • Catalyst

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High-performance solidification catalyst "CleanFix HSCFP-T"

We received many requests to create high-performance resins, and we successfully turned Cleanfix into a solid powder!

"HSCFP-T" is a solid powdered form of the "Clean Fix TAM" catalytic aqueous solution, which exhibits excellent antibacterial, antiviral, deodorizing, antifungal, and anti-soiling properties with sustained effects. By mixing it with resins and other materials, it can bleed onto the surface of the resin, adding high-functionality catalytic effects to the finished resin surface. When the solidified "Clean Fix TAM" catalyst was blended with ABS resin and antibacterial tests were conducted, excellent antibacterial activity values were confirmed even at low addition levels. It can be mixed with various resins, making it possible to create high-functionality resins with sustained properties. 【Features】 ■ Does not require ultraviolet light, thus effective in various environments such as light and dark or hot and cold. ■ Acts directly on harmful substances without damaging the target material. ■ Decomposes harmful substances that come into contact with the catalyst bled onto the coated surface or resin surface. *For more details, please download the PDF or feel free to contact us.

  • Composite Materials
  • Catalyst

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Photocatalytic Mask 'N99'

The film has a filter hole diameter of 0.075μm! It cannot allow viruses to pass through and cannot enter the airways.

The "N99" is a photocatalytic mask that can be reused and easily washed with water. It absorbs sulfides in the mouth (decomposing them with negative ions), eliminating unpleasant odors, and has good breathability due to PTFE (polytetrafluoroethylene). Additionally, it can be washed with water and reused. The ear strap comes in two types: an integrated type and a rubber type. 【Features】 ■ Contains photocatalytic titanium dioxide (TiO2) ■ Forms an electric protective film by charging ■ Decomposes microorganisms into water and carbon dioxide *For more details, please refer to the PDF document or feel free to contact us.

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Development of next-generation catalysts utilizing elemental properties!

Keywords: typical element chemistry, organometallic chemistry, element properties, precision polymerization reactions, transition metal-free catalysts, chemical conversion of carbon dioxide.

The creation of "new chemical species" that do not exist in conventional contexts allows for the simultaneous elucidation of new properties such as bonding, structure, and reactivity, as well as the clarification of the new reactivity they confer. In particular, composite compounds that combine main group elements and transition metals generate unique "elemental characteristics" between the elements, enabling the creation of highly active catalysts and highly reactive chemical species. As examples of such "elemental characteristics," we have worked on (1) the development of precision olefin polymerization catalysts and (2) the synthesis of low-coordinate compounds of high-period group 14 elements (tetrelens). In (1), we achieved high activity that surpasses conventional catalysts and successfully produced polyolefins with controlled stereostructures. In (2), the synthesized tetrelens exhibited unique coordination behavior towards transition metals and were found to be usable as alternatives to rare transition metal catalysts. Currently, we are challenging the development of catalysts that enable the conversion reactions of carbon dioxide into useful chemical products using tetrelens.

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Mold Prevention and Hygiene Management: Sasakan Method Mold Prevention Construction

Thoroughly suppress and eliminate mold, including black mold, with the power of our independently developed chemical agents.

We propose mold prevention construction using our company’s uniquely developed chemical agents. Are you facing any of these issues? - Mold is increasing due to condensation... - Store-bought products can't remove black mold... - I tried other companies' products, but the mold returned quickly... If mold prevention is not taken care of... - Increased health risks: Mold can trigger allergic reactions and respiratory diseases, posing a danger especially to those with weakened immune systems. - Breeding ground for odors: Mold generates unpleasant smells, deteriorating the air quality of the facility. - Decreased cooling performance: Poor water quality can reduce cooling efficiency, increasing the risk of equipment overheating. - Deterioration of appearance: Mold can cause dark stains on walls and ceilings, detracting from the appearance of buildings and rooms. - Increased long-term costs: Neglecting the issue may lead to the need for extensive repairs. The Sasakan method of mold prevention construction will solve everything. *For more details, please download the PDF or feel free to contact us.

  • Other contract services
  • Other insect and mold prevention measures
  • Catalyst

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Photocatalytic honeycomb carbon

Catch odors and deodorize! Reusable and economical!

Catch odors and deodorize! Reusable photocatalytic honeycomb charcoal! When sunlight is irradiated on the photocatalyst, the odor components adsorbed on the honeycomb are decomposed into H2O and CO2 by the action of the photocatalyst, and the adsorption function of the activated carbon is regenerated. 【Features】 ○ Rapid deodorization of odors ○ Excellent durability ○ Deodorization function is quickly regenerated by sunlight ○ Economical as it can be reused ● For more details, please request materials or download the catalog.

  • Air purifiers
  • Chemicals
  • others
  • Catalyst

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【English Market Research Report】World Market for Chemical Catalysts

"Free samples" are currently being offered! Please check the application method from the [PDF download] button, or apply directly from the related links.

The chemical catalyst market is expected to experience significant growth in the coming years. By 2028, it is projected to grow to $49.57 billion at a CAGR of 5.7%. The anticipated growth during the forecast period is attributed to increased investment in renewable energy, rising demand for specialty chemicals, greater adoption of the hydrogen economy, stringent emission standards, and the expansion of the chemical and petrochemical industries in developing regions. Key trends expected during the forecast period include technological advancements in catalysts, a shift towards green and sustainable technologies, advancements in catalyst technology, the increasing importance of nanocatalysts, and a transition to bio-based catalysts.

  • Other services
  • Catalyst

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Reduction amino-catalyst

Synthesis of primary to tertiary amines in one pot is possible!

This is a highly active reductive amination catalyst that can synthesize primary, secondary, and tertiary amine compounds from carbonyl compounds in a one-pot reaction under mild conditions. 【Good Reactivity】 ■ High Catalytic Activity Under conditions of S/C=10,000, it is possible to synthesize 1-phenylethylamine from acetophenone. ■ High Functional Group Selectivity It can synthesize primary amines from acetophenone derivatives containing nitro or cyano groups without compromising the functional groups. ■ High Diastereoselectivity It can synthesize primary amines with high diastereoselectivity from substituted aliphatic cyclic ketones. 【Simple Reaction Operation】 ■ No Special Reaction Equipment Required Using ammonium formate or formic acid as the hydrogen source eliminates the need for special equipment such as pressure vessels. ■ Mild Reaction Conditions It can be used under reaction conditions of 60°C to reflux, making it highly practical. ■ Stable in Air This catalyst can be handled stably in air, allowing for weighing with standard laboratory equipment. For more details, please download the catalog or feel free to contact us.

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Iridium catalyst for chiral amine synthesis

Excellent functional group tolerance, capable of reacting with a wide range of substrates! Chiral amines can be obtained directly from ketones! Furthermore, the reaction can also be performed in a one-pot manner!

At Kanto Chemical, we have developed and sold practical reductive amination iridium catalysts that can synthesize amines under mild conditions, and we have now developed a new asymmetric reductive amination catalyst. In particular, in the reductive amination reaction combined with amino alcohols as asymmetric auxiliaries, it has become possible to easily synthesize optically active amines, which have been difficult to synthesize asymmetrically until now. We are pleased to announce the addition of the PSA18 series, which has high reactivity with linear ketone substrates, to our product lineup. We encourage you to utilize it in product development and research. 【Features】 ■ High performance High catalytic activity, high stereoselectivity, high functional group selectivity ■ Short reaction process No need for isolation of imines; reactions can be performed in one pot up to deprotection ■ Easy operability No need for hydrogen gas or pressure-resistant containers for both reductive amination and deprotection processes For more details, please download the catalog or feel free to contact us.

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Asymmetric molecular catalyst

It is a catalyst that takes into consideration both safety and environmental aspects.

■Asymmetric Hydrogenation Catalyst (IPHAN, DMAPEN Catalyst) In asymmetric hydrogenation catalysts, diamin ligands such as DPEN and DAIPEN are commonly used. At Kanto Chemical, we offer asymmetric hydrogenation catalysts (IPHAN, DMAPEN catalysts) that demonstrate high enantioselectivity in the asymmetric hydrogenation of cyclic ketones and amino ketones by changing the diamin ligands to different structures like IPHAN and DMAPEN. ■Asymmetric Phase Transfer Catalyst (DIOXEAZEPINE) The metal-free DIOXEAZEPINE catalyst is expected to be an effective means for the synthesis of optically active pharmaceuticals, as it avoids contamination of the product with metal derived from the catalyst. This catalyst is useful for the synthesis of optically active α-α-dialkyl amino acids. For more details, please download the catalog or feel free to contact us.

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Non-uniform hydrogenation catalyst 's-PICA catalyst'

The ketone that had given up on the asymmetric reaction has become an optically active alcohol with high enantioselectivity!

This is a new asymmetric hydrogenation ruthenium catalyst developed in collaboration with Professor Okuma from Hokkaido University, featuring a unique substrate applicability range that has never been seen before. It efficiently converts ketones into optically active alcohols with high efficiency and high enantioselectivity. By selecting the reaction conditions, it is also possible to reduce keto esters to diols. The catalyst is suitable for bulk supply, making it useful for industrial processes. **Features** - Unique substrate applicability range: It hydrogenates bulky multi-substituted ketones, unprotected heteroaromatic ketones, and keto esters with high efficiency and high enantioselectivity, which conventional catalysts could not efficiently react with. - Proven performance at kg scale: There is a track record of asymmetric hydrogenation reactions at tens of kg scale. Reactions are also possible with a substrate/catalyst molar ratio (S/C) of over 10,000. For more details, please download the catalog or feel free to contact us.

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Highly selective asymmetric hydrogenation catalyst

XylSKEWPHOS catalyst

Asymmetric ruthenium catalysts using diphosphines and diamines as ligands exhibit extremely high catalytic activity and enantioselectivity in the asymmetric hydrogenation of ketones. At Kanto Chemical, we have examined the structure of diphosphine ligands and are selling a highly selective asymmetric hydrogenation catalyst (XlySKEWPHOS catalyst) that uses XlySKEWPHOS as a ligand, which provides higher enantioselectivity. For more details, please download the catalog or feel free to contact us.

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Improved asymmetric reduction catalyst & triflate catalyst

It can be used for hydrogen transfer asymmetric reduction reactions and asymmetric hydrogenation reactions of ketones.

■Improved Asymmetric Reduction Catalyst Asymmetric ruthenium complexes with optically active tosyl diamines as ligands are very useful as asymmetric reduction catalysts for ketones; however, sufficient enantioselectivity may not be achieved for bulky substrates. At Kanto Chemical, we offer an improved asymmetric reduction catalyst with modified sulfonyl groups that exhibits high enantioselectivity for bulky substrates. ■Triflate Catalyst By introducing dissociative anionic ligands into hydrogen transfer-type asymmetric ruthenium catalysts with arene ligands and tosyl diamine ligands, hydrogen is activated, allowing for more efficient asymmetric hydrogenation reactions of ketones compared to hydrogen transfer-type asymmetric reduction catalysts. The triflate catalyst does not contain strong bases, so the reaction proceeds under neutral to weakly acidic conditions. Therefore, it is useful for the asymmetric hydrogenation of unstable cyclic ketones, phenacyl chloride, α-hydroxyacetophenone, and other compounds under basic conditions. For more details, please download the catalog or feel free to contact us.

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New diphosphine ligand dcypt

A novel diphosphine ligand that catalyzes unprecedented new reactions!

The dcypt ligand developed by Professor Kenichiro Itami from Nagoya University’s Institute of Transformative Molecular Science (WPI-ITbM) and Professor Junichiro Yamaguchi from Waseda University’s School of Advanced Science and Engineering is stable in air, making it easy to handle. It has the property of catalyzing various new reactions when combined with different metal species, so please make use of it in your research. 【Features】 ■ Catalyzes a variety of novel reactions ■ Stable in air and easy to handle ■ Potential to catalyze new reactions For more details, please download the catalog or feel free to contact us.

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Effective even with low light! Photocatalysts effective for virus prevention.

In addition to hospitals and medical facilities, it can also be used as part of safety measures and HACCP compliance in food factories, where strict hygiene management is required!

"IRIS" is a titanium dioxide coating agent that enables practical effects in visible light by hybridizing copper with titanium dioxide, which traditionally only exhibited effects under ultraviolet light and not in the visible spectrum. In tests conducted by public institutions, antibacterial effects were observed under an illumination of 200LX from fluorescent lights. It can be used as part of safety measures and HACCP compliance in medical facilities, including hospitals, as well as in food factories where strict hygiene management is required. 【Features】 ■ Hybrid of titanium dioxide and copper ■ Antibacterial effects observed at 200LX ■ High safety *For more details, please download the PDF or feel free to contact us.

  • Chemicals
  • Catalyst

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Fuel cost reduction for heavy oil and light oil, and CO2 reduction! Fuel reforming filter device.

The fuel reforming filter device "NEO EXERGY" contributes to the reduction of fuel consumption, CO2, NOx, and SOx! It achieves an ultra-strong repulsive force with its special structure.

"NEO EXERGY" is a fuel reforming filter device that simultaneously reduces fuel costs and greenhouse gas emissions. The refined oil particles bond with oxygen, improving fuel efficiency. Clumps of oil particles that normally do not burn are also combusted. Additionally, the residual oxygen captured is reduced, leading to decreased emissions of NOx and SOx. [Features] ■ Reduced fuel consumption ■ Decreased emissions of black smoke and PM ■ Decreased emissions of NOx and SOx ■ Achieves ultra-strong repulsive force with a special structure ■ Crushes clumps of oil particles *For more details, please refer to the PDF materials or feel free to contact us.

  • Other energy equipment
  • Catalyst

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