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Exploring the Feasibility of Benzoin Dimethyl Ether as a Photoinitiator 651: A Market Analysis by a Leading Supplier
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Photoinitiator 651 (BDK) CAS:24650-42-8 manufacturer


Ningbo Inno Pharmchem Co., Ltd. is a leading manufacturer of specialty chemicals, including photoinitiators. One of their most innovative products is Benzoin Dimethyl Ether (DMPA), also known as Photoinitiator 651 or Photoinitiator BDK. In this article, we will explore the feasibility of using Benzoin Dimethyl Ether as a replacement for Photoinitiator 651 and its potential impact on the market.

What is Photoinitiator 651?

Photoinitiator 651, also known as UV-651 or PI-BDK, is a common photoinitiator used in UV-curable coatings, inks, and adhesives. It is a Type II photoinitiator, which means it requires a co-initiator to start the curing process. Photoinitiator 651 is known for its fast curing speed, high reactivity, and low toxicity. However, it is also known for its high cost and limited availability.

The Feasibility of Using Benzoin Dimethyl Ether

Benzoin Dimethyl Ether (DMPA) is a Type I photoinitiator, which means it can initiate polymerization on its own without the need for a co-initiator. It is a white crystalline powder that is soluble in most organic solvents. DMPA is known for its low cost, high efficiency, and low toxicity. It is also readily available, unlike Photoinitiator 651.

Ningbo Inno Pharmchem Co., Ltd. has conducted extensive research on the use of Benzoin Dimethyl Ether as a replacement for Photoinitiator 651. Their findings indicate that DMPA has comparable curing speed, reactivity, and performance as Photoinitiator 651. It also has the added benefit of being a Type I photoinitiator, which simplifies the formulation process by eliminating the need for a co-initiator.

Market Impact

The potential impact of using Benzoin Dimethyl Ether as a replacement for Photoinitiator 651 could be significant. Firstly, it would lower the cost of UV-curable coatings, inks, and adhesives, making them more accessible to a wider range of industries. Secondly, it would increase the availability of photoinitiators, reducing supply chain disruptions and lead times. Finally, it would provide a safer and more sustainable alternative to Photoinitiator 651, which is known for its high toxicity.

Conclusion

In conclusion, the use of Benzoin Dimethyl Ether as a replacement for Photoinitiator 651 is not only feasible but also has the potential to revolutionize the market. As a leading supplier of specialty chemicals, Ningbo Inno Pharmchem Co., Ltd. is committed to providing innovative solutions to their customers. The introduction of Benzoin Dimethyl Ether as a viable alternative to Photoinitiator 651 is a testament to their dedication to research and development.
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