2009 IEEE 9th International Conference on the Properties and Applications of Dielectric Materials 2009
DOI: 10.1109/icpadm.2009.5252187
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Effect of nanometer inorganic particles on DC breakdown characteristics of Al2O3/PI films

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Cited by 2 publications
(4 citation statements)
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“…Furthermore, the higher IBE and ISS values of the interface imply that the bonding strength of the interface between BNNS and EP is larger, so that the region near BNNS is more compact within a certain range, and the mass density in the vicinity of BNNS is significantly higher than that of the matrix. Besides, existing researches [37,38,51,52] showed that interfacial compatibility is positively correlated with interfacial bonding strength, so the compatibility of BNNS/EP also becomes better with the increase of functional density according to Figure 8, which means that the functional group of CH 3 -(CH 2 ) 4 -O-is appropriate for BNNS. And the favorable interfacial compatibility will contribute to molecular entanglement near BNNS, which is beneficial for enhancing interfacial bonding strength.…”
Section: Interfacial Bonding Strengthmentioning
confidence: 96%
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“…Furthermore, the higher IBE and ISS values of the interface imply that the bonding strength of the interface between BNNS and EP is larger, so that the region near BNNS is more compact within a certain range, and the mass density in the vicinity of BNNS is significantly higher than that of the matrix. Besides, existing researches [37,38,51,52] showed that interfacial compatibility is positively correlated with interfacial bonding strength, so the compatibility of BNNS/EP also becomes better with the increase of functional density according to Figure 8, which means that the functional group of CH 3 -(CH 2 ) 4 -O-is appropriate for BNNS. And the favorable interfacial compatibility will contribute to molecular entanglement near BNNS, which is beneficial for enhancing interfacial bonding strength.…”
Section: Interfacial Bonding Strengthmentioning
confidence: 96%
“…A more comprehensive multicore interfacial model composed of a bonded layer, a bound layer, and a loose layer is proposed by Tanaka, and the model has been successfully used to explain the mechanism of the decrease of dielectric constant, the inhibition of space charge, and the improvement of corona resistance from interfacial effects [36,37]. These experiments and models were mainly used to determine the macro chemical-physical structure of the interface as well as its electrical properties.However, the interfacial characteristic of nanocomposites is not fully understood yet, and most of the interfacial models are assumed based on experimental results [38]. The development of molecular simulation technology provides a powerful tool to directly analyze the interface properties in nanocomposite from a microscopic perspective [39,40].…”
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confidence: 99%
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“…Το προτεινόμενο μοντέλο μπορεί να εξηγήσει διάφορες ιδιότητες που εμφανίζουν τα πολυμερή νανοσυνθετικά υλικά, όπως η διηλεκτρική σταθερά, ο ελεύθερος όγκος, ο συντελεστής διηλεκτρικών απωλειών, η αγωγιμότητα υπό χαμηλά πεδία (low field conduction), η αγωγιμότητα υπό υψηλά πεδία (high field conduction), τα φορτία χώρου, η ηλεκτροφωταύγεια (electroluminescence), η φωτοφωταύγεια (photoluminescence), η αντοχή στη διηλεκτρική διάσπαση, η αντοχή στις μερικές εκκενώσεις, η θερμοκρασία υαλώδους μετάπτωσης, η θερμική αγωγιμότητα, η παγίδευση φορτίου (carrier trapping) και το φαινόμενο των ηλεκτρικών δενδριτών (Tanaka et al, 2005;Tanaka, 2005;Tanaka et al, 2006). Επίσης, έχει χρησιμοποιηθεί ώστε να εξηγηθεί η βελτίωση της αντοχής στη διηλεκτρική διάσπαση, που παρατηρήθηκε σε νανοσυνθετικά φιλμ από πολυαμίδιο με 5 % κατά βάρος περιεκτικότητα σε νανοσωματίδια Al 2 O 3 σε σύγκριση με φιλμ από αμιγές πολυαμίδιο (Bu et al, 2009).…”
Section: μοντέλο πυρήνα πολλαπλών στοιβάδωνunclassified