Full metadata record
DC Field | Value | Language |
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dc.contributor.author | Bae, Dong Su | - |
dc.contributor.author | Kim, Chunghun | - |
dc.contributor.author | Lee, Hunsu | - |
dc.contributor.author | Khater, Omar | - |
dc.contributor.author | Kim, Keun Su | - |
dc.contributor.author | Shin, Homin | - |
dc.contributor.author | Lee, Kun-Hong | - |
dc.contributor.author | Kim, Myung Jong | - |
dc.date.accessioned | 2024-01-19T12:01:53Z | - |
dc.date.available | 2024-01-19T12:01:53Z | - |
dc.date.created | 2022-11-08 | - |
dc.date.issued | 2022-05 | - |
dc.identifier.issn | 2196-5404 | - |
dc.identifier.uri | https://pubs.kist.re.kr/handle/201004/115178 | - |
dc.description.abstract | Highly crystalline and few-walled boron nitride nanotubes (BNNTs) had been synthesized by laser ablation using only ammonia borane as a precursor. As a molecular precursor, ammonia borane supplied both B and N atoms with a ratio of 1:1, and BNNTs were formed via the homogeneous nucleation of BN radicals, not the growth from boron nano-droplets, which is a generally accepted growth mechanism of the laser-grown BNNTs. Owing to the absence of amorphous boron impurities, the van der Waals interaction among BNNTs became effective and thus a BNNT fibers was formed spontaneously during the BNNT synthesis. The BNNT growth and the subsequent fiber formation are found to occur only at high pressures of a surrounding gas. The mechanism behind the critical role of pressure was elucidated from the perspective of reaction kinetics and thermal fluid behaviors. A polarized Raman study confirmed that the BNNT fiber formed exhibits a good alignment of BNNTs, which implies great potential for continuous production of high-quality BNNT fibers for various applications. | - |
dc.language | English | - |
dc.publisher | Springer | Korea Nano Technology Research Society | - |
dc.title | Spontaneous formation of boron nitride nanotube fibers by boron impurity reduction in laser ablation of ammonia borane | - |
dc.type | Article | - |
dc.identifier.doi | 10.1186/s40580-022-00312-y | - |
dc.description.journalClass | 1 | - |
dc.identifier.bibliographicCitation | Nano Convergence, v.9, no.1 | - |
dc.citation.title | Nano Convergence | - |
dc.citation.volume | 9 | - |
dc.citation.number | 1 | - |
dc.description.isOpenAccess | Y | - |
dc.description.journalRegisteredClass | scie | - |
dc.description.journalRegisteredClass | scopus | - |
dc.description.journalRegisteredClass | kci | - |
dc.identifier.wosid | 000794973300001 | - |
dc.relation.journalWebOfScienceCategory | Nanoscience & Nanotechnology | - |
dc.relation.journalWebOfScienceCategory | Materials Science, Multidisciplinary | - |
dc.relation.journalWebOfScienceCategory | Physics, Applied | - |
dc.relation.journalResearchArea | Science & Technology - Other Topics | - |
dc.relation.journalResearchArea | Materials Science | - |
dc.relation.journalResearchArea | Physics | - |
dc.type.docType | Article | - |
dc.subject.keywordPlus | ELASTIC-MODULUS | - |
dc.subject.keywordPlus | GROWTH | - |
dc.subject.keywordAuthor | Boron nitride nanotubes | - |
dc.subject.keywordAuthor | Laser ablation | - |
dc.subject.keywordAuthor | Ammonia borane | - |
dc.subject.keywordAuthor | Homogeneous nucleation | - |
dc.subject.keywordAuthor | Spontaneous fiber formation | - |
dc.subject.keywordAuthor | Pressure effect | - |
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