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請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/26662
標題: Adapting additives and crystalline structure for long-lasting melt-blown metallocene polypropylene webs
作者: Kuo, Ming-Chih
Chu, Cheng-Kun
Lai, Chiu-Chun
Hsu, Yu-Tung
Huang, Wei-Chi
Lee, Ho-Chien
Lee, Hung-Bin 
關鍵字: Metallocene polypropylene;Melt-blown electret webs;Nucleating agents;Crystallinity and charge stability;Filtration performance;Metallocene polypropylene;Melt-blown electret webs;Nucleating agents;Crystallinity and charge stab
公開日期: 2026
出版社: SPRINGER
卷: 33
期: 5
來源出版物: JOURNAL OF POLYMER RESEARCH
摘要: 
Melt-blown polypropylene (PP) electret webs feature low crystallinity and poor charge stability. This study uses an alpha-nucleating agent (DMDBS), beta-nucleating agent (TMB), and two commercial stearate-based masterbatches, which are denoted as C1 and C2, to modify the crystalline structure, electret behavior and filtration performance of melt-blown metallocene PP webs. XRD and DSC analyses show that the crystalline structure plays a critical role in the stability with which space charges are stored. The use of DMDBS, TMB and stearate-based masterbatches also alters the nature and density of charge traps by changing specific molecular structures and the interaction with the semicrystalline PP matrix. Aging at 70 degrees C for 24 h decreases the efficiency of all webs, but the presence of nucleating agents or masterbatches significantly reduces electrostatic decay. DMDBS/PP exhibits the smallest decrease in efficiency and quality factor but the C2/PP web has the most advantageous combination of high filtration efficiency, low pressure decrease and strong long-term stability, so it the best suited to practical filtration applications. These results show the mechanism whereby nucleation-induced crystallization governs electret performance and allows the design of advanced melt-blown metallocene PP electret filters for respiratory protection and environmental uses.
URI: http://scholars.ntou.edu.tw/handle/123456789/26662
ISSN: 1022-9760
DOI: 10.1007/s10965-026-04915-5
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