Pu-inorganic mesostructured composites for advanced thermal insulation

Technology
In development
University

Innovative PU-inorganic mesostructured composites offer advanced thermal insulation with tunable properties, strong mechanical robustness, and ease of fabrication. Ideal for building applications with improved R values and lightweight design.

Overview

Polyurethane-inorganic mesostructured composites (PUMCs) present a groundbreaking solution for advanced thermal insulation applications. These composites combine organic and inorganic phases to create highly tunable materials that offer exceptional thermal insulation, mechanical robustness, and structural integrity. They are particularly suited for building applications where precise customization of physical properties such as R value and density is crucial. The straightforward fabrication process ensures cost-effective production, making PUMCs a viable and efficient choice for next-generation insulation materials.

Technical specifications

Key features:

  • Tunable formulation: The ability to adjust organic and inorganic precursors allows for customization of properties to meet specific application needs, including enhanced R values and controlled porosity.
  • Covalent bonding: This ensures robust mechanical strength and longevity, outperforming traditional materials like ordinary Portland cement.
  • Ease of fabrication: PUMCs are produced using a simple mixing strategy, with post-processing options like mold casting and precision machining available.
  • Lightweight yet strong: With a density of 1.2 g/cm³, these composites are approximately 1.5 times lighter than OPC, with superior flexural strength.
  • Insulation efficiency: Capable of outperforming traditional materials, offering up to 2 times the insulation of OPC.
Technology readiness level

PUMCs have reached a Technology Readiness Level of 5, indicating that they have been validated in a relevant environment. Future work will focus on optimizing formulation parameters to enhance thermal conductivity and exploring new geometries for specialized applications. Additional flammability testing is underway to further ensure safety and compliance with industry standards.


About University of California, Los Angeles

The University of California, Los Angeles is a comprehensive public research university anchored in a global city and serving a large, diverse student body. Industry engages through an integrated academic health system that enables clinical research and translation, extensive shared instrumentation and cleanrooms, and co‑located labs that support prototyping. A new research and technology park and proximity to Southern California’s innovation economy provide convenient pathways for collaboration, sponsored projects, and access to talent. Campus research is supported by competitive federal funding from agencies such as NIH, NSF, DOE, and the Department of Defense. A dedicated technology transfer office streamlines IP protection, licensing, industry‑sponsored research, and startup incubation.

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