PUBLISHER: Stratistics Market Research Consulting | PRODUCT CODE: 1787878
PUBLISHER: Stratistics Market Research Consulting | PRODUCT CODE: 1787878
According to Stratistics MRC, the Global Polyether Modified Polysiloxane Market is accounted for $1.46 billion in 2025 and is expected to reach $2.38 billion by 2032 growing at a CAGR of 7.2% during the forecast period. Polyether-modified polysiloxane is a type of silicone surfactant that combines the unique properties of both polyethers and polysiloxanes. In many formulations, this hybrid structure works incredibly well as a wetting agent, emulsifier, and dispersant due to its exceptional surface activity. Low surface tension, good spreading properties, and thermal stability are provided by the polysiloxane backbone, while the polyether segments improve compatibility with organic and aqueous systems. Consequently, polyether-modified polysiloxanes are widely used in formulation stability, spreadability, and overall product performance in industries like textiles, personal care, coatings, and agriculture.
According to the American Chemical Society (ACS), polyether-modified siloxanes have been widely studied and engineered for surfactant and dispersion roles. For example, a study published in ACS Omega describes how UV-cured polyether-modified polysiloxane-urethane acrylates can exhibit tensile strengths ranging from ~2 to ~20 MPa-highlighting their robust mechanical performance in coatings and adhesives.
Growing need for super-spreaders in agriculture
Agricultural applications have been transformed by polyether-modified polysiloxanes, which function as extremely effective super-spreaders and wetting agents in pesticide and herbicide formulations. Because these surfactants significantly reduce the surface tension of aqueous sprays, active ingredients can disperse uniformly and reach plant surfaces that are difficult to wet, like waxy or hairy leaves. This result in better coverage, lower dosage needs, and enhanced agrochemical uptake-even in harsh environmental circumstances. Such performance-enhancing adjuvants are anticipated to become much more in demand, particularly in nations implementing precision farming techniques, as global agriculture faces mounting pressure to increase productivity while reducing chemical inputs and environmental impact.
Dependency on raw materials and high production costs
The high cost of production, which is mostly caused by the intricate synthesis process and the price volatility of raw materials like siloxane monomers and ethylene oxide/propylene oxide derivatives, is one of the main factors limiting the market for polyether-modified polysiloxane. Sophisticated machinery and strict quality control are necessary for the production process, particularly for applications like electronics or pharmaceuticals that demand high purity and performance standards. Furthermore, changes in the price of crude oil and petrochemical feedstocks, which are the foundation of many PMP components, can have a big impact on manufacturing costs.
Innovation in cosmetics and personal care
Innovative, functional ingredients that meet clean-label standards and provide superior sensory experiences are still in high demand in the personal care sector. PMPs are useful in skin care, hair care, and sun protection products because they provide a special balance of performance and compatibility with formulations that are both water- and oil-based. In the burgeoning cosmeceuticals industry, where products blend cosmetic appeal with dermatological benefits, their capacity to form breathable, non-greasy films and function as emulsifiers and conditioning agents offers exciting opportunities. The demand for PMP surfactants that improve spread ability, feel, and product stability will be further supported by the rising popularity of multipurpose, hybrid products like BB creams, tinted moisturizers, and anti-aging serums.
Competition from new bio-based and green surfactants
Traditional PMP-based formulations are facing an increasing competitive threat from the rise of bio-based and green surfactants, which are made from renewable resources like plant oils, sugars, and amino acids. Because of their low toxicity, biodegradability, and regulatory compliance, these substitutes are being used more and more in textile, home care, personal care, and agricultural applications. Moreover, biotechnology advancements such as enzymatically modified natural polymers and fermentation-derived biosurfactants are making it possible for environmentally friendly substitutes to perform on par with or better than traditional silicone-based surfactants.
The COVID-19 pandemic affected the market for polyether modified polysiloxane (PMP) in a variety of ways. The market was disrupted in the early stages of the outbreak by labor shortages, global supply chain disruptions, and decreased industrial activity, which primarily affected important end-use sectors like electronics, construction, and the automotive industry. But as consumers' attention turned more to cleanliness and self-care, demand soared in areas like personal care and hygiene products, where PMPs are used as conditioners and emulsifiers. Furthermore, the demand for PMP-based adjuvants remained steady in the agricultural sector because of their essential nature. Interest in high-performance, low-VOC PMP formulations increased over time as economies started to recover and green, sustainable manufacturing gained traction, setting up the market for long-term growth despite temporary setbacks.
The agriculture segment is expected to be the largest during the forecast period
The agriculture segment is expected to account for the largest market share during the forecast period, motivated by its vital function in improving agrochemical formulations' efficiency. Because PMP compounds can dramatically lower surface tension and increase coverage on plant surfaces, they are frequently used as super-spreaders and wetting agents in pesticides, herbicides, and foliar fertilizers. By ensuring improved active ingredient penetration and absorption, this raises crop yields while using less chemical input. Moreover, the demand for PMP-based agricultural adjuvants is increasing as precision and sustainable farming methods gain traction worldwide, particularly in high-growth regions like Asia-Pacific and Latin America.
The ink & coatings segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the ink & coatings segment is predicted to witness the highest growth rate. The growing need for high-performance, low-VOC waterborne paints and coatings in industrial, architectural, and automotive applications is driving this quick expansion. Important formulation characteristics like flow, leveling, defoaming, and anti-cratering are improved by polyether-modified polysiloxanes, which also guarantee outstanding compatibility with a range of resin systems. Additionally, formulators are using PMP-based additives to satisfy strict performance and regulatory requirements as end users seek long-lasting, eco-friendly finishes. As a result, SMPs are being widely used in coatings and ink applications worldwide.
During the forecast period, the Asia-Pacific region is expected to hold the largest market share, driven by nations like China, India, and Japan's booming end-use sectors, agricultural intensification, and fast industrialization. Strong demand from the construction, textile, and agricultural sectors-where PMPs are extensively utilized as surfactants, leveling agents, and super-spreaders-supports the region's dominance. Asia-Pacific's position in the world market is further reinforced by China's substantial role as a producer and consumer of PMP-based products. Furthermore, the region's growth is also aided by supportive government regulations, rising awareness of sustainable farming methods, and rising investments in manufacturing infrastructure.
Over the forecast period, the Middle East & Africa (MEA) region is anticipated to exhibit the highest CAGR, driven by growing industrial diversification, infrastructure development, and agricultural expansion. The region's nations are making significant investments in contemporary farming methods, where PMP-based adjuvants are essential for increasing water and pesticide efficiency. At the same time, the use of PMPs in paints, inks, and adhesives is increasing due to the growing demand for advanced coatings, sealants, and construction materials, particularly in the Gulf Cooperation Council (GCC) countries. Moreover, MEA nations are anticipated to become the world's fastest-growing market for PMPs as they continue to embrace high-performance additives across all industries and shift toward sustainable industrial practices.
Key players in the market
Some of the key players in Polyether Modified Polysiloxane Market include BASF SE, Momentive Performance Materials Inc., Gelest, Inc., Wacker Chemie AG, Evonik Industries AG, Dow Chemical Company, Shin-Etsu Chemical Co., Ltd., Elkem ASA, Siltech Corporation, BRB International BV, SILIBASE SILICONE, Hangzhou Topwin Technology Development Co., Ltd., AB Speciality Silicones and Supreme Silicones Ltd.
In April 2025, BASF and the University of Toronto have signed a Master Research Agreement (MRA) to streamline innovation projects and increase collaboration between BASF and Canadian researchers. This partnership is part of a regional strategy to extend BASF's collaboration with universities in North America into Canada. This is a great achievement for BASF, as it marks the company's first MRA with a Canadian university.
In March 2025, Momentive Performance Materials group (Momentive) and silicon products manufacturer Jiangxi Hungpai Material have signed a definitive agreement to establish a joint venture focused on the manufacturing and sale of silanes in Asia. The partnership combines Momentive's materials expertise with Hungpai's manufacturing capabilities of silane products, including organofunctional silanes, said Momentive.
In August 2023, Evonik has recently solidified an agreement that holds the potential to significantly impact the methyl methacrylate (MMA) production landscape. The agreement entails the upscaling and production of a tailored catalyst to support Rohm's upcoming MMA manufacturing facility in Bay City, Texas, USA. Set to open its doors in 2024, this advanced plant signifies a leap forward in Rohm's production capabilities.