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Yandong Guo 《中国物理 B》2022,31(12):127201-127201
Controlling the spin transport at the single-molecule level, especially without the use of ferromagnetic contacts, becomes a focus of research in spintronics. Inspired by the progress on atomic-level molecular synthesis, through first-principles calculations, we investigate the spin-dependent electronic transport of graphene nanoflakes with side-bonded functional groups, contacted by atomic carbon chain electrodes. It is found that, by rotating the functional group, the spin polarization of the transmission at the Fermi level could be switched between completely polarized and unpolarized states. Moreover, the transition between spin-up and spin-down polarized states can also be achieved, operating as a dual-spin filter. Further analysis shows that, it is the spin-dependent shift of density of states, caused by the rotation, that triggers the shift of transmission peaks, and then results in the variation of spin polarization. Such a feature is found to be robust to the length of the nanoflake and the electrode material, showing great application potential. Those findings may throw light on the development of spintronic devices. 相似文献
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热丝和射频等离子体化学气相沉积法制备定向碳纳米管薄膜 总被引:1,自引:0,他引:1
采用热丝和射频等离子体复合化学气相沉积设备(PE-HF-CVD),以CH4、H2和N2为反应气体.在较低衬底温度下(500℃),用简单的催化剂制备方法--旋涂法在硅片上涂覆Ni(NO3)2溶液,经热处理及H2还原后的Ni颗粒为催化剂,在硅衬底上制备出了垂直于硅片且定向生长的碳纳米管薄膜.扫描电子显微镜(SEM)和透射电子显微镜(TEM)结果显示,1 mol/l的硝酸镍溶液旋涂硅片所得催化剂制得的碳纳米管管径为30~50 nm,长度超过4μm,定向性好.并用拉曼光谱(Raman)对不同摩尔浓度Ni(NO3)2溶液条件下制备的碳纳米管薄膜样品进行了表征. 相似文献
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为了实现高速旋转工件的在线三维面形检测,提出一种高速旋转物体频闪在线相位测量轮廓术(PMP)三维测量方法。利用圆形正弦光栅替代线形正弦光栅,采用高密度二元编码光栅替代灰度编码光栅,设计专用频闪同步控制单元同时触发投影系统频闪投射相移光栅和图像采集单元同步获取图像,获得物体在同一"冻结"位置下的相移变形条纹后,采用静态PMP相移算法重建物体的三维面形信息。实验结果表明,该方法具备可行性和实用性,可有效避免工件离线检测时多次装夹不一致引入的加工误差,能够提高工件的检测效率和加工效率,可用于其他高速旋转物体的三维面形重建。 相似文献
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在SC型高功率镍氢电池的负极中添加不同含量的碳纳米管制备SC型高功率镍氢电池, 并对其容量、大电流放电性能和循环寿命进行研究. 结果发现, 碳纳米管的加入有利于提高电池的综合性能, 尤其是大电流放电性能和循环寿命; 加入碳纳米管的含量为0.8%(w)时电池的综合性能最好, 其最高容量达到3369 mAh, 2C(6000 mA)循环600次后容量仍然保持在3280 mAh(97% DOD(放电深度))以上, 5C(15000 mA)循环180 次容量仍然有2850 mAh(89.1% DOD)以上. 相似文献
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