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首页> 外文期刊>Journal of Applied Physics >Tunability of localization length in naphthalene sulfonic acid doped polyanilineickel ferrite composite nanorods system
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Tunability of localization length in naphthalene sulfonic acid doped polyanilineickel ferrite composite nanorods system

机译:萘磺酸掺杂聚苯胺/镍铁氧体复合纳米棒系统中定位长度的可调谐性

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摘要

Tunability of key length scales including nanodimensionality, mean free path, localization length, and cyclotron radius gives opportunities to fabricate nanodevices with new functionalities. Herein, in order to tune localization length, composite nanorods (CNRs) of 2-naphthalene sulfonic acid doped polyaniline (PANI-NSA) and nickel ferrite nanoparticles (NiFe2O4 NPs) are synthesized via an in situ chemical polymerization method. The nanorods' structure and the incorporation of the NiFe2O4 NPs into the PANI-NSA matrix are envisaged by various characterization techniques. The presence of a hysteresis loop with minor coercivity and remanence suggests the ferrimagnetic property of PANI-NSA/NiFe2O4 CNRs at room temperature. Investigation of electrical resistivity as a function of temperature in the absence of an external magnetic field establishes quasi-one-dimensional variable range hopping conduction mechanism of the PANI-NSA/NiFe2O4 CNR samples. CNR samples with two different loadings of NiFe2O4 NPs demonstrate substantial amounts of magnetoresistance (MR) at all the temperatures (300-50K) studied. Intriguingly, a transition from positive to negative MR is observed with an increase in temperature from 200 to 300K for CNR samples with less amount of NiFe2O4 (CNRs 1), whereas MR is positive for CNRs with higher loading of NiFe2O4, throughout the studied temperatures. Positive and negative MR behaviors of the CNR samples are quantitatively elucidated in terms of wave function shrinkage and forward interference models. Deduced localization length from the forward interference regime for CNRs 1 is about one order of magnitude larger than that in the wave function shrinkage regime. Thus, tuning of localization length can be achieved qualitatively through appropriate loading of NiFe2O4 NPs.
机译:关键长度尺度的可调谐性,包括纳米尺度,平均自由程,定位长度和回旋加速器半径,为制造具有新功能的纳米器件提供了机会。在此,为了调节定位长度,通过原位化学聚合方法合成了2-萘磺酸掺杂的聚苯胺(PANI-NSA)和镍铁氧体纳米颗粒(NiFe2O4 NPs)的复合纳米棒(CNR)。可以通过各种表征技术设想纳米棒的结构以及将NiFe2O4 NP掺入PANI-NSA基质中。具有较小矫顽力和剩磁的磁滞回线的存在表明PANI-NSA / NiFe2O4 CNR在室温下的亚铁磁性质。在不存在外部磁场的情况下,电阻率随温度变化的研究建立了PANI-NSA / NiFe2O4 CNR样品的准一维可变范围跳变传导机制。具有两种不同负载量的NiFe2O4 NP的CNR样品在所有研究温度(300-50K)下均显示出大量的磁阻(MR)。有趣的是,在整个研究温度范围内,对于NiFe2O4含量较低的CNR样品(CNR 1),随着温度从200K升高到300K,观察到了从MR到负MR的转变,而对于NiFe2O4含量较高的CNR,MR呈阳性。 CNR样本的正和负MR行为根据波函数收缩和前向干扰模型进行了定量分析。从前向干扰机制得出的CNR 1的局域化长度大约比波函数收缩机制中的局域化长度大一个数量级。因此,可以通过适当加载NiFe2O4 NP定性地实现定位长度的调节。

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  • 来源
    《Journal of Applied Physics 》 |2019年第3期| 035102.1-035102.13| 共13页
  • 作者单位

    Univ South Africa UNISA, Dept Phys, POB 1709, Florida, South Africa;

    CSIR, DST, Natl Ctr Nanostruct Mat, POB 0001, Pretoria, South Africa|Univ South Africa UNISA, Dept Civil & Chem Engn, POB 1709, Florida, South Africa;

    Univ South Africa UNISA, Dept Phys, POB 1709, Florida, South Africa;

    Univ South Africa UNISA, Dept Phys, POB 1709, Florida, South Africa;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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