• English
    • العربية
  • العربية
  • Login
  • QU
  • QU Library
  •  Home
  • Communities & Collections
View Item 
  •   Qatar University Digital Hub
  • Qatar University Institutional Repository
  • Academic
  • Faculty Contributions
  • College of Arts & Sciences
  • Materials Science & Technology
  • View Item
  • Qatar University Digital Hub
  • Qatar University Institutional Repository
  • Academic
  • Faculty Contributions
  • College of Arts & Sciences
  • Materials Science & Technology
  • View Item
  •      
  •  
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Versatile synthesis of dendritic mesoporous rare earth–based nanoparticles

    Thumbnail
    View/Open
    Versatile synthesis of dendritic mesoporous rare earth–based nanoparticles.pdf (824.0Kb)
    Date
    2022-07-29
    Author
    Yu, Hongyue
    Wang, Wenxing
    Liu, Minchao
    Zhao, Tiancong
    Lin, Runfeng
    Hou, Mengmeng
    Kou, Yufang
    Chen, Liang
    Elzatahry, Ahmed A.
    Zhang, Fan
    Zhao, Dongyuan
    Li, Xiaomin
    ...show more authors ...show less authors
    Metadata
    Show full item record
    Abstract
    Rare earth–based nanomaterials that have abundant optical, magnetic, and catalytic characteristics have many applications. The controllable introduction of mesoporous channels can further enhance its performance, such as exposing more active sites of rare earth and improving the loading capacity, yet remains a challenge. Here, we report a universal viscosity-mediated assembly strategy and successfully endowed rare earth–based nanoparticles with central divergent dendritic mesopores. More than 40 kinds of dendritic mesoporous rare earth–based (DM-REX) nanoparticles with desired composition (single or multiple rare earth elements, high-entropy compounds, etc.), particle diameter (80 to 500 nanometers), pore size (3 to 20 nanometers), phase (amorphous hydroxides, crystalline oxides, and fluorides), and architecture were synthesized. Theoretically, a DM-REX nanoparticle library with 393,213 kinds of possible combinations can be constructed on the basis of this versatile method, which provides a very broad platform for the application of rare earth–based nanomaterials with rational designed functions and structures.
    URI
    https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85135203850&origin=inward
    DOI/handle
    http://dx.doi.org/10.1126/sciadv.abq2356
    http://hdl.handle.net/10576/41329
    Collections
    • Materials Science & Technology [‎315‎ items ]

    entitlement


    Qatar University Digital Hub is a digital collection operated and maintained by the Qatar University Library and supported by the ITS department

    Contact Us | Send Feedback
    Contact Us | Send Feedback | QU

     

     

    Home

    Submit your QU affiliated work

    Browse

    All of Digital Hub
      Communities & Collections Publication Date Author Title Subject Type Language Publisher
    This Collection
      Publication Date Author Title Subject Type Language Publisher

    My Account

    Login

    Statistics

    View Usage Statistics

    Qatar University Digital Hub is a digital collection operated and maintained by the Qatar University Library and supported by the ITS department

    Contact Us | Send Feedback
    Contact Us | Send Feedback | QU

     

     

    Video