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The electromagnetic (EM) wave absorbing carbon black (CB /gypsum based composites with high wave absorption properties and wide effective bandwidth were prepared by filling expanded perlite (EP) simply.
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Metal-organic frameworks (MOFs) is an ideal class of precursors or templates to build up transition metal based composites with unique architectures and high electrochemical performance for energy storage applications.
This work provides a better understanding of design graphene based composites with hierarchical layered structure and high performance.
This work provides a promising methodology to fabricate high performance graphene-based composites with superior strength and ductility by simultaneously combining the reinforcement of graphene sheets and the uniqueness interfacial structure.
It is anticipated to exploit covalent functionalization of MoS2 nanosheets and MoS2-based composites with high performance.
It is challenging to utilize TiO2-based composites with high specific surface area to improve dye-sensitized solar cells (DSSCs) performance.
In the present paper, we describe a new and original method to obtain transparent, siloxane-based composites, with high refractive index (up to 1.68).
This work demonstrates methods to fabricate CNT based polymer composites with high loading fractions of the filler, alignment control of nanotubes and optimized erosive wear properties.
The pultrusion process offers a production method that enables polymer based composite profiles with a sufficiently high material quality at an affordable price to be used in various applications within building industries.
Films based on chitosan with medium Mw and one of the uppermost gold content (M5) demonstrated the highest antibacterial effect in comparison to chitosan with low and high Mw based composites.
Engineered Cementitious Composite (ECC) is a class of High-Performance Fiber-Reinforced Cement based Composite (HPFRCC) materials that has been developed and tailored over the last several decades.
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