語系/ Language: 繁體中文

Development of a Facile Strategy for...
Poon, Kevin,

 

  • Development of a Facile Strategy for Integrating Electrically Conductive and Anisotropic Metal-Organic Frameworks Into Polymeric Textiles via Atomic Layer Deposition /
  • 紀錄類型: 書目-語言資料,印刷品 : Monograph/item
    正題名/作者: Development of a Facile Strategy for Integrating Electrically Conductive and Anisotropic Metal-Organic Frameworks Into Polymeric Textiles via Atomic Layer Deposition // Kevin Poon.
    作者: Poon, Kevin,
    面頁冊數: 1 electronic resource (50 pages)
    附註: Source: Masters Abstracts International, Volume: 86-08.
    提要註: The integration of metal-organic frameworks (MOFs) with textiles presents significant challenges, particularly in achieving uniform and durable coatings that maintain the inherent properties of the MOF. Traditional methods such as direct solvothermal growth, in situ solvothermal synthesis, and layer-by-layer growth often struggle with poor adhesion, uneven distribution, and low crystallinity of the MOFs on textile surfaces. This study explores the synthesis and characterization of MOF-functionalized polypropylene (PP) textile composites, focusing particularly on electrically conductive MOFs (c-MOFs), including Zn3(HHTP)2 and Cu3(HHTP)2, utilizing atomic layer deposition (ALD)-deposited metal oxide layers as nucleation templates. Additionally, hydroxy double salt (HDS), an intermediate species known for enabling fast room temperature conversion into MOFs, was used for the first time to fabricate textile-based composites uniformly coated with Cu3(HHTP)2. Furthermore, the use of ALD-deposited ZnO and TiO2 layers as nucleation layers for MOF growth was evaluated, with ZnO proving to be more effective in promoting uniform and crystalline MOF coatings. The synthesis process was further optimized by examining key parameters, such as reaction time and fiber density, which significantly influenced the MOF morphology, crystallinity, growth density, and orientation on the fiber surface. Interestingly, uniformly grown Cu3(HHTP)2 MOFs, which adhered well to the fiber surface, exhibited distinct and highly entangled curvy nanowire morphologies, showcasing their potential for advanced applications, including energy storage, chemical detoxification, and separation. As an added benefit, thermal gravimetric analysis (TGA) confirmed that successive MOF-layer transformations enhance the thermal stability of the composites. Moreover, the synthesized composites retained their structural integrity even after water treatment.
    Contained By: Masters Abstracts International86-08.
    標題: Textile research. -
    電子資源: http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=31766271
    ISBN: 9798304916189
多媒體
評論
  • 新增評論 分享你的心得,請勿在此評論區張貼涉及人身攻擊、情緒謾罵、或內容涉及非法的不當言論,館方有權利刪除任何違反評論規則之發言,情節嚴重者一律停權,以維護所有讀者的自由言論空間。
Export
取書館別
 
 
變更密碼
登入

請輸入帳號密碼

          (請輸入學號/職號).

      (請輸入學校電子郵件密碼)
.
    本校和附屬機構教職員工生,可透過校務資訊系統【快速登入區】進行登入,不用再認證。

    校內教職員工及學生

    帳號:學號/職號;密碼:本校電子信箱密碼

    附屬機構醫事人員、其他非編制內教職員工

    帳號:職號;密碼:身份證號共10碼,英文字母大寫

    校友及外校實習生

    帳號:借書證上之條碼號;密碼:請點選忘記密碼重新設定

    如有任何問題歡迎洽詢圖書館流通櫃台(分機2133*83;read@kmu.edu.tw),謝謝。

        ~請尊重智慧財產權,勿非法影印~

     Login information for International Students: *Username: Student ID Password: KMU Email Password

     If you have any question, please contact us. (Tel : 07-3121101#2133#83; Email: read@kmu.edu.tw)

     ~Please respect the Intellectual Property Rights, do not use illegal copies of textbooks ~