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These unique structure property relationships may serve as templates for engineering hierarchically structured polymer composites with tailored properties.
Regular honeycomb structured polymer electrodes with channels of 50 μm were prepared and used for electrochemical and spectroelectrochemical studies.
Understanding of the dynamic and static structure property relationship in Palmetto wood can facilitate the development of new hierarchically structured polymer composites with increased resistance to failure.
This review summarizes advancements in the last ten years in the design and fabrication of hierarchically structured polymer fibers via electrospinning technologies, including a diversity of electrospinning devices and electrospinning parameters using various polymers.
Dispersions of nanotubes stabilized by block copolymers in selective solvents can be used to cast composite films in which the nanotubes are segregated in microdomains of the structured polymer.
Hierarchically structured polymer fibers encompassing 1-D, 2-D, and 3-D structures with at least one dimension nano- to micro-meters in size have recently received an increasing amount of attention due to their vast potential in such applications as sensing, medicine, energy storage.
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This study reports the importance of physicochemical characteristics of the core-shell structured polymer-coated Fe3O4 cluster@SiO2 nanocomposite particles for designing the biocatalysts used for transesterification of soybean oil.
Multilevel structured polymers can be useful materials for applications in highly specialized industries, i.e. tissue engineering.
Sandwich-structured polymer nanocomposites that provide a pathway to overcome the paradox between permittivity and breakdown strength ever existing in dielectric materials are receiving increasing attentions for their superior energy storage performance.
Significant effort is devoted to depositing and understanding the physical properties of organic thin films, hybrid organic/inorganic structures, polymer solids and self-assembled materials.
The exfoliation process is studied as functions of VI-polymer molecular structure, polymer concentration, and initial graphite concentration.
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