Progress on organotin products bis(dodecylthio)

As an important class of organometallic materials, organotin compounds, especially bis(dodecylthio)tin compounds, exhibit unique properties and a wide range of applications in a variety of fields. These compounds not only have excellent thermal stability and corrosion resistance due to the long-chain alkyl sulfur groups in their structures, but also exhibit low toxicity, good biocompatibility, and catalytic activity, and thus have attracted extensive attention from researchers in the fields of plastic stabilizers, catalysts, pesticides, and biomedical materials. The following is a brief overview of the research progress of bis(dodecylthio)tin-based products.

Application of organotin stabilisers in the plastics industry
In the plastics industry, bis(dodecylthio)tin compounds are widely used as heat stabilisers, especially in polyvinyl chloride (PVC) processing. They can effectively inhibit the degradation of PVC due to dehydrogen chloride reaction during high temperature processing or long-term use, thus extending the service life of the products. In recent years, as environmental regulations have become more stringent, researchers are working to develop low-toxicity, high-efficiency alternatives to reduce the environmental and health risks that may be associated with traditional tin heat stabilisers. Improving the ecological compatibility of compounds by adjusting the molecular design, e.g. introducing biodegradable groups, is an important direction of current research.

Innovative applications in catalysis
Bis(dodecylthio)tin compounds show great potential as Lewis acid catalysts in organic synthesis due to their unique coordination ability and catalytic properties. They can promote a variety of organic reactions, including esterification and polymerisation reactions, etc. Especially in the field of green chemistry, the search for environmentally friendly catalysts has become a hot topic. Research focuses on how to optimise their catalytic efficiency and selectivity while reducing the generation of by-products for more efficient and sustainable chemical synthesis processes.

New explorations in biomedical materials
Although organotin compounds have relatively few applications in the biomedical field, research in recent years has begun to reveal their potential in antibacterial and anti-tumour applications. Bis(dodecylthio)tin compounds have been investigated as a basis for the design of novel drugs, especially in antifungal drugs and anticancer therapies, due to their specific biological activities. By precisely modulating the structure of organotin molecules, scientists aim to develop novel drug candidates that are both effective in killing pathogens and less toxic to normal cells.

Environmental impact and sustainability
Considering the potential impacts that organotin compounds may have on the environment and ecosystems, in particular the bioaccumulation and persistence of some organotin compounds, research on their environmental behaviour and ecotoxicology is also receiving increasing attention. Scientists are endeavouring to develop more environmentally friendly alternatives and to promote the development of organotin-based products in a more sustainable direction by comprehensively evaluating the environmental impacts of these materials from production to disposal through life cycle assessment.

Conclusion
In summary, the progress of research on bis(dodecylthio)tin products shows that through continuous optimisation of molecular structure and properties, these organotin compounds are gradually overcoming environmental and safety challenges while maintaining their original advantages, and moving towards greener, more efficient and multifunctional directions. Future research will focus more on balancing environmental friendliness, biocompatibility and high performance to meet the demand for high-quality materials in different fields, while protecting the Earth’s ecological environment and promoting sustainable development.
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NT CAT DMDEE

NT CAT PC-5

NT CAT DMP-30

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DMCHA – Amine Catalysts (newtopchem.com)

Dioctyltin dilaurate (DOTDL) – Amine Catalysts (newtopchem.com)

Polycat 12 – Amine Catalysts (newtopchem.com)

N-Methylmorpholine

4-Formylmorpholine

Suppliers of Bis(dodecylthio)dimethyltin

Finding reliable suppliers of bis(dodecylthio)dimethyltin involves meticulous research of manufacturers, distributors and chemical trading platforms in the market. Below are a few key steps and recommended channels to help you effectively enquire and target suitable suppliers:

1. Use professional chemical platforms
GaiderChem.com: As a well-known chemical information and trading website, GaiderChem.com provides a wealth of supplier resources, including information on many suppliers of bis(dodecylthio)dimethyltin, such as price, specification, company reputation, etc. Users can filter suppliers according to their needs and directly ask for quotations online or contact suppliers.
2. Browse the websites of leading companies in the industry
Kramer Shanghai: Based on previous records, Kramer Shanghai offers a wide range of organotin compounds, including similar products. Visiting its official website, you can enquire about the supply of dimethyltin disulfide isooctyl acetate and other products, and make use of its sales hotline or enterprise QQ to communicate directly and get the latest supply information and quotations.
3. Alibaba Chemical Market
Alibaba has a large number of chemical suppliers, enter the keyword “bis(dodecylthio)dimethyltin”, you can find the corresponding supplier list. The platform usually displays suppliers’ credit ratings, transaction records, contact information, etc., which makes it easy for buyers to compare and choose. Remember to check the qualifications of the suppliers, such as whether they have passed the ISO quality management system certification to ensure product quality.
4. Directly contact the manufacturer
Although Hubei Dongcao Chemical Technology Co., Ltd. and Hubei Nona Technology Co., Ltd. do not directly mention bis(dodecylthio)dimethyltin, they may have production lines of related products or be able to provide customised services as professional chemical manufacturers. A direct visit to the company’s official website or enquiry by phone or email may reveal specific product information they can provide.
5. Consider customised services
If standard products do not meet specific needs, consider contacting a supplier like Xinden Chemical Materials (Shanghai) Co. Ltd. who offers a wide range of organostannic compounds, including thiomethyltin, has customised production capabilities, and may be able to produce bis(dodecylthio)dimethyltin according to your requirements.
Things to consider when making enquiries:
Verify supplier qualifications: Confirm whether the supplier has a legal business licence, safety production permit and environmental qualifications, etc.
Quality standards: Ask about product purity and test reports to ensure compliance with industry standards or specific application requirements.
Price and payment terms: Compare the offers of different suppliers and find out the minimum order quantity, payment methods and transport costs.
After-sales service: Understand the supplier’s return and exchange policy and technical support capability.
Through the above channels, you can systematically collect information, compare and select the bis(dodecylthio)dimethyltin supplier that best meets your needs. Remember to make full communication and confirmation before the transaction to ensure the smooth procurement process.

extended reading?

NT CAT DMDEE

NT CAT PC-5

NT CAT DMP-30

NT CAT DMEA

NT CAT BDMA

DMCHA – Amine Catalysts (newtopchem.com)

Dioctyltin dilaurate (DOTDL) – Amine Catalysts (newtopchem.com)

Polycat 12 – Amine Catalysts (newtopchem.com)

N-Methylmorpholine

4-Formylmorpholine

Bis(dodecylthio)organotin compounds market price analysis and influencing factors

In the field of fine chemicals and materials science, bis(dodecylthio)organostannic compounds, as an important class of functional chemicals, are subject to price fluctuations that directly affect the cost control and market strategies of downstream industries. With their unique chemical stability and catalytic activity, these compounds play a key role in various fields such as polymer stabilisers, catalysts and biocides. In this article, we will discuss the current market price status of bis(dodecylthio)organotin compounds, analyse the key factors affecting their price trends, and look into the future price trends.

Market Price Status
The specific price of bis(dodecylthio)organostannic compounds is affected by a variety of factors, including raw material costs, production technology, market demand, policies and regulations, and the international economic environment. In the current market, the price range of such compounds is relatively broad, depending on the quality, purity, brand and purchase volume, the price can range from hundreds of yuan per kilogram to thousands of yuan per kilogram. For example, specific models such as di(dodecylthio)dioctyltin have been reported to be priced at $228 per bag, but please note that prices fluctuate with market conditions and this price is for reference only.

Key Factors Affecting Prices
1. Fluctuation of raw material prices
The synthesis of organotin compounds relies on tin metal and other organic raw materials such as dodecanethiol. As a base metal, the fluctuation of the international market price of tin directly affects the production cost of organotin compounds. In addition, changes in the price of oil will also indirectly affect the cost of organic raw materials, which will be transmitted to the price of the final product.

2. Supply and demand
Market supply and demand conditions are the most basic factors determining commodity prices. As the demand for organic tin compounds grows in industries such as plastics, paints and rubber, if the supply cannot keep up in time, it will lead to price increases. On the contrary, if there is excess capacity, it may cause prices to decline. In particular, the restricted use of certain traditional organotin compounds, driven by environmental regulations, has prompted the market to seek substitutes, which will change the balance between supply and demand for specific organotin compounds.

3. Policies and regulations
The development and implementation of environmental regulations have a profound impact on the organotin compounds market. As the global focus on persistent organic pollutants (POPs) deepens, the use of some toxic organotin compounds, such as tributyltin and triphenyltin, has been restricted or banned. This has prompted manufacturers to turn to the development and production of safer organotin compounds, such as bis(dodecylthio)organotin, and regulatory adjustments have often been accompanied by cost increases, which are reflected in end-product prices.

4. Production technology and capacity
Advances in production technology can reduce costs and improve efficiency, exerting downward pressure on prices. However, the reality of large initial technology investments and high technical barriers may also lead to price increases in the short term. In addition, uneven distribution of global production capacity and high concentration of production may also exacerbate price volatility, especially if there are supply disruptions in major producing countries.

5. International trade environment
International trade policies, tariff changes and exchange rate fluctuations can affect the import and export costs of organotin compounds, which in turn affects their prices. For example, trade frictions may lead to higher raw material import costs and lower competitiveness of exported products, and price fluctuations are inevitable.

Outlook for future price trends
Looking ahead, as global environmental protection requirements continue to improve, it is expected that bis(dodecylthio)organotin compounds complying with the latest environmental standards will become more popular and demand will continue to grow. At the same time, technological innovation and optimisation of production processes will help reduce costs, but fluctuations in raw material prices, policy adjustments and uncertainty in the global economic situation will remain key variables affecting prices. Therefore, the price trend will be a dynamic and balanced process, requiring close attention to the changes in the above factors.

In conclusion, the price analysis of bis(dodecylthio)organotin compounds is a complex process that requires comprehensive consideration of a variety of factors. For the relevant enterprises, understanding the driving mechanism behind the price and adjusting production strategy and supply chain management at the right time will be the key to responding to market changes and maintaining competitiveness.

extended reading?

NT CAT DMDEE

NT CAT PC-5

NT CAT DMP-30

NT CAT DMEA

NT CAT BDMA

DMCHA – Amine Catalysts (newtopchem.com)

Dioctyltin dilaurate (DOTDL) – Amine Catalysts (newtopchem.com)

Polycat 12 – Amine Catalysts (newtopchem.com)

N-Methylmorpholine

4-Formylmorpholine