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Fiber Reinforced Concrete01:22

Fiber Reinforced Concrete

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Fiber-reinforced concrete significantly enhances the structural and nonstructural properties of traditional concrete by incorporating fibers like steel, glass, and polymers. These fibers, varying from natural ones such as sisal and cellulose to manufactured ones like polypropylene and Kevlar, are mixed into hydraulic cement with aggregates. Steel fibers, often preferred for their robustness, contribute to improved ductility, toughness, and post-cracking performance. The concrete is classified...
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Recent research progress in CDs@MOFs composites: fabrication, property modulation, and application.

Zhi Wang1, Xudong Jin1, Lingpeng Yan1,2

  • 1Key Laboratory of Interface Science and Engineering in Advanced Materials, Ministry of Education, Taiyuan University of Technology, Taiyuan, 030024, China.

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|December 15, 2022
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Summary

Carbon dots (CDs) integrated with metal-organic frameworks (MOFs) create advanced CDs@MOFs composites. These materials enhance fluorescence, photoelectricity, and stability for diverse applications.

Keywords:
Carbon dotsCompositesFluorescence probesMetal organic frameworksOptical propertiesPhotoelectrocatalysisSolid-state lightning

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Area of Science:

  • Materials Science
  • Nanotechnology
  • Chemistry

Background:

  • Carbon dots (CDs) offer excellent fluorescence, biocompatibility, and low toxicity.
  • Metal-organic frameworks (MOFs) serve as ideal hosts to enhance CD properties.
  • CDs@MOFs composites combine the advantages of both materials for advanced functionalities.

Purpose of the Study:

  • To review synthesis methods for CDs@MOFs composites.
  • To highlight the synergistic effects of CDs and MOFs on structure and optical properties.
  • To generalize recent applications and future prospects of CDs@MOFs.

Main Methods:

  • Introduction of synthesis strategies for CDs@MOFs.
  • Analysis of structural and optical property regulation through synergy.
  • Generalization of application research in fluorescent probes, solid-state lighting, and photoelectrocatalysis.

Main Results:

  • Synergistic interactions between CDs and MOFs significantly influence composite properties.
  • CDs@MOFs demonstrate potential in advanced fluorescent probes.
  • Composites show promise in solid-state lighting and photoelectrocatalysis.

Conclusions:

  • CDs@MOFs composites offer tunable properties for various applications.
  • Challenges in structure-property regulation and commercialization require further investigation.
  • Future research should focus on optimizing synthesis and exploring new applications.