Please use this identifier to cite or link to this item: http://repository.ipb.ac.id/handle/123456789/166042
Title: Sintesis dan Karakterisasi Mikrofiber Berserat Kaca Bioaktif Berbasis Borat untuk Aplikasi Wound Dressing
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Authors: Nuzulia, Nur Aisyah
Sari, Yessie Widya
Siratuyasa, Siti Farhah
Issue Date: 2025
Publisher: IPB University
Abstract: Kulit memiliki fungsi sebagai pelindung utama terhadap lingkungan yang rentan terhadap berbagai cedera sehingga memerlukan wound dressing untuk mempercepat penyembuhan. Penelitian ini bertujuan untuk fabrikasi wound dressing mikrofiber kaca bioaktif berbasis borat (BG) menggunakan metode electrospinning dengan berbagai konsentrasi. Hasil menunjukkan mikrofiber berhasil terbentuk tanpa merubah struktur fasa alami BG yang ditunjukkan oleh puncak lebar pada pola difraksi sinar-X serta citra SEM yang menunjukkan fiber berukuran mikro. Namun, penambahan konsentrasi BG berpengaruh pada morfologi mikrofiber dengan adanya beads yang berdampak pada penurunan kuat tarik. Hasil uji degradasi juga menunjukkan kemampuan mikrofiber yang dapat terdegradasi seiring dengan lamanya waktu pengamatan ditunjukkan dengan bertambahnya persentase susut massa dan laju degradasi mikrofiber.
The skin functions as the primary protector against the environment, which is vulnerable to various injuries, so it requires wound dressing to accelerate healing. This study aims to fabricate borate-based bioactive glass microfiber wound dressing (BG) using the electrospinning method with various concentrations. The results showed that microfibers were successfully formed without altering the natural phase structure of BG, as indicated by the broad peaks in the X-ray diffraction pattern and SEM images, which showed micro-sized fibres. However, the addition of BG concentration affected the morphology of the microfibers, particularly in the presence of beads, resulting in a decrease in tensile strength. The results of the degradation test also demonstrated the ability of microfibers to degrade, as indicated by the increasing percentage of mass loss and the rate of microfiber degradation over the observation time.
URI: http://repository.ipb.ac.id/handle/123456789/166042
Appears in Collections:UT - Physics

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