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  1. Facile Fabrication of Flame-retardant SiO2/APP@PDMS Fabric with Superhydrophobicity for Highly Efficient Oil/Water Separation

    Flame-retardant SiO 2 /APP@PDMS fabric with superhydrophobicity was prepared via ultrasound-assisted sol-gel method and dip-coatings, in which cotton...

    Wei**g Zhao, **nyan **ao, Zhihao Ye in Fibers and Polymers
    Article 19 January 2021
  2. Fluorine-free, robust and self-healing superhydrophobic cotton fabric based on the disulfide bond exchange reaction

    Superhydrophobic (SH) surfaces are the surfaces with high static water contact angles (WCAs, > 150°) and low sliding angles (SAs, < 10°) which are...

    **xue Yang, Hui Li, ... Guoqiang Chen in Cellulose
    Article 05 May 2023
  3. Emerging Technological Applications of Additive Manufacturing

    Once considered to be a field specific to mechanical sciences, additive manufacturing has now proliferated into all streams of science and swiftly...
    Sunil Mehla, PR. Selvakannan, ... Suresh K. Bhargava in Additive Manufacturing for Chemical Sciences and Engineering
    Chapter 2022
  4. Impact of pH and Calcination Temperature on Synthesis, Characterization, and Cytotoxicity of Silicon Oxide Nanoparticles

    Silicon nanoparticles are critical in nanotechnology research. They are widely regarded as harmless and biocompatible. Silicon nanoparticles have...

    Pratikhya Badanayak, Jyoti V. Vastrad in Silicon
    Article 19 January 2022
  5. Facile fabrication of superhydrophobic and flame-retardant coatings on cotton fabrics via layer-by-layer assembly

    The hydrophilicity and intrinsic inflammability of pristine cotton fabrics severely restrict their applications. To overcome these disadvantages, a...

    Dongmei Lin, **ngrong Zeng, ... Xuejun Lai in Cellulose
    Article 15 March 2018
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