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Results 1 - 10 of 160 for Multi walled nanotubes
  • Article - 14 May 2025
    Carbon nanotubes are transforming electrochemical water treatment. Explore how CNT-based filters improve contaminant removal, reduce energy use, and support sustainable purification.
  • Article - 12 May 2025
    Learn how carbon nanotubes improve crop yield, enhance soil microbiota, and support sustainable agriculture through water management, gene delivery, and soil remediation.
  • Article - 8 Apr 2025
    Nanotechnology offers a next-gen solution to plant genome editing challenges by enabling precise, efficient delivery of CRISPR, RNA, and DNA tools using nanoparticles like AuNPs, CNTs, and lipid...
  • Article - 17 Mar 2025
    Carbon nanotubes (CNTs) are among the strongest and most conductive materials known. Explore their unique structure and what makes them so remarkable.
  • Article - 24 Feb 2025
    China is investing significantly in nanotechnology, focusing on applications in semiconductors, energy storage, and biomedical engineering. This article discusses key initiatives, advancements, and...
  • Article - 17 Feb 2025
    Advancements in nano-catalysts are transforming biofuel production, increasing efficiency and quality while supporting sustainability and emission reduction.
  • Article - 5 Nov 2024
    Fuel cells offer a clean energy solution, utilizing green hydrogen and innovative nanomaterials to improve efficiency and sustainability in power generation.
  • Article - 17 Oct 2024
    Carbon nanotubes have properties such as high electrical conductivity and strength, which make them suitable as supplemental materials for energy conversion and storage devices. Their use may improve...
  • Article - 15 Oct 2024
    Nanomaterials are any type of material of nanosized thickness, i.e. less than 100 nm in thickness. There are various types, many of which exhibit different properties than bulk materials.
  • Article - 30 Jul 2024
    BNNTs are a promising alternative to CNTs, offering unique properties like high strength, thermal stability, and wide-gap semiconducting behavior, making them suitable for advanced nanotechnology...

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