首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Spin injection behavior in conducting polymer coated superparamagnetically functional microstructures
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Spin injection behavior in conducting polymer coated superparamagnetically functional microstructures

机译:导电聚合物包覆的超顺磁功能微结构的自旋注入行为

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A nanoferrite superparamagnetic system synthesized through co-precipitation method and subsequently dispersed in a medium of de-ionized water was encapsulated with a matrix polymer under constant sonication using chemical oxidative polymerization technique. The polymer coated functional microstructure thus obtained shows enhanced magnetization as evidenced from the results reported elsewhere. The magnetic core crystal growth and anti-spin canting hypothesis were given to be the most general justification behind the unusual enhancement in magnetization and more specifically the rationale could understand recently in accordance with spin injection behavior in functional core-shell microstructures. In this paper, an attempt has been made to correlate the previous magnetization results with spin injection behavior, in conjunction with the thermo gravimetric and dielectric results.
机译:通过共沉淀法合成的纳米铁氧体超顺磁性系统,随后分散在去离子水介质中,使用化学氧化聚合技术在恒定超声处理下,用基质聚合物封装。如此获得的聚合物涂覆的功能微结构显示出增强的磁化强度,如从其他地方报道的结果所证明的。磁芯晶体的生长和抗自旋倾斜假说被认为是磁化强度异常提高之后最普遍的论据,更具体地讲,根据功能性核-壳微结构中的自旋注入行为,最近可以理解的原理。在本文中,已经尝试将先前的磁化结果与自旋注入行为以及热重和介电结果结合起来。

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