Skip to content
Review Open access

Additive‐Assisted Modification of PDMS Nanocomposites: Rheology, Reinforcement Mechanisms, and Multifunctional Performance

Sep 2026 · Polymer Engineering & Science · 0 citations · 193 references

Abstract

Polydimethylsiloxane (PDMS) is a widely used elastomer owing to its flexibility, optical clarity, ease of processing, and biocompatibility. However, its application in high‐performance systems is often limited by poor mechanical strength, modest thermal endurance, and high gas permeability. Recent advances in additive‐assisted modification using carbon‐based, inorganic, and hybrid nanofillers have demonstrated significant improvements in rheological, mechanical, thermal, and functional performance. This review critically examines the influence of nanofillers on PDMS, focusing on reinforcement mechanisms, rheological behavior, and multifunctional properties. The mechanisms governing property improvements, such as filler–matrix interactions, interfacial bonding, dispersion quality, and surface functionalization, are analyzed in detail. Comparisons are drawn among carbon‐based materials, inorganic fillers, and hybrid systems to provide a comprehensive understanding of structure–property relationships. Applications in microfluidics, flexible electronics, biomedical systems, and protective coatings are also highlighted. Finally, current challenges related to dispersion, large‐scale processing, and biocompatibility are discussed, together with future opportunities in hybrid reinforcement, sustainable additives, and data‐driven materials design for next‐generation PDMS technologies.

Read PDF

Similar papers

Review Open access Sep 2026

Polydimethylsiloxane‐Based Composites: A Review of Design, Characterization, and Emerging Applications

Polydimethylsiloxane (PDMS) is a widely used silicone elastomer owing to its flexibility, chemical inertness, optical transparency, and biocompatibility. However, its relatively low mechanical strength, poor thermal and electrical conductivity, and hydrophobic surface limit its performance in advanced applications....

Ravinder Kaur, Karanbir Singh, R. Mehta · 0 citations
Review Open access Sep 2026

Elastomer nanocomposites filled with graphene-based nanomaterials: insights from molecular dynamics simulations

Elastomers are a class of polymers known for their elasticity and resilience, widely used in various industries. However, their application is limited by insufficient mechanical performance, including low stiffness, poor wear resistance and barrier properties. Therefore, elastomers are typically reinforced with fille...

Vihanga Kularatne, N. Dutta, Nevena Todorova et al. · 0 citations
Aug 2026

Structure-property relationships in functionalized PDMS elastomers for stretchable applications

Polydimethylsiloxane (PDMS) elastomers are commonly used in flexible electronics, soft robotics, microfluidics, and biomedical devices due to their chemical stability, transparency, and biocompatibility; however, their inherent mechanical weakness and limited stretchability frequently limit advanced applications. Thi...

B. K. Sharma, Jenefa Tharaniselvam, Karuppiah Nagaraj · 0 citations
Review Open access Aug 2026

Recent Advances and Environmental Challenges in Polymer Nanocomposites: Nanofillers, Processing Technologies, and Applications

Polymer nanocomposites have attracted considerable attention owing to their ability to achieve substantial improvements in mechanical, thermal, electrical, barrier, and multifunctional properties through the incorporation of low concentrations of nanoscale fillers. This review provides a comprehensive analysis of recen...

Ding-Hao Wang, Olena Bakulich, V. Trachevskyi et al. · 0 citations
Review Sep 2026

Dispersion and functionalization as interfacial drivers in next-generation rubber composites.

Elastomers are indispensable across applications ranging from tires to soft robotics, prized for their elasticity, resilience, and durability. Despite this central role, progress in elastomer composites has been guided largely by empirical compounding, with insufficient emphasis on the interfacial energetics that gover...

Su-Bin Kim, Na Chu, Seulbee Lee et al. · 0 citations
Review Sep 2026

Advances in siloxane-based materials reinforced hybrid hydrogels and their biomedical applications.

Hydrogels are distinguished by their high-water content, superior biocompatibility, and stimuli-responsive properties, which have found widespread applications in biomedical domains such as drug delivery, tissue engineering, and wound healing. However, conventional hydrogels are often hindered by intrinsic drawbacks su...

Meng-Ke Li, Xuan-Yu Yu, Meng Guo et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.