首页> 外文会议>Nanotechnology >Single-molecule magnets on a polymeric thin film as magnetic quantum bits
【24h】

Single-molecule magnets on a polymeric thin film as magnetic quantum bits

机译:聚合物薄膜上的单分子磁体作为磁性量子位

获取原文
获取原文并翻译 | 示例

摘要

Increasing information storage to densities past 100 Gbit inch~(-2) has prompted major research activities in magnetic recording . The demand of magnetic storage media with higher areal density, may push the use of monodispersed and oriented large single-molecule magnets (SMM) with magnetic properties characteristic of nanoscale magnetic particles . If properly addressed into a disk support, SMM may represent nanoscale magnetic particles of a sharply defined size that offer the potential access to the ultimate high-density information storage devices or to quantum computing applications. Here we show the obtaining of thin films that consist of a polycarbonate matrix containing molecularly dispersed Mn_(12) complexes as single-molecule magnets. After treatment of such films with different solvent vapors, the swollen polymer allows the self-organization of the polymeric matrix and the Mn_(12) molecules. This fact allows the movement of the Mn_(12) molecules and their location on the surface either as individual molecules a in the form of molecular aggregates. Thus, this simple methodology permits the obtaining of nanocomposite thin films in which SMM are preferentially aligned with respect the film surface showing furthermore isolated SMM on the surface, as revealed by AFM and MFM images. Moreover, the advantageous properties of polymeric matrices, such as flexibility, transparency and low density, make this type of materials very interesting for potential applications.
机译:将信息存储增加到超过100 Gbit inch〜(-2)的密度促使了磁记录领域的主要研究活动。具有更高面密度的磁存储介质的需求,可能会推动使用具有纳米级磁性颗粒磁特性的单分散定向取向的大单分子磁体(SMM)。如果适当地寻址到磁盘支架中,则SMM可以表示尺寸明确定义的纳米级磁性粒子,从而可以访问最终的高密度信息存储设备或量子计算应用程序。在这里,我们显示了由包含分子分散的Mn_(12)配合物作为单分子磁体的聚碳酸酯基体组成的薄膜。用不同的溶剂蒸气处理此类薄膜后,溶胀的聚合物可使聚合物基质和Mn_(12)分子自组织。这一事实允许Mn_(12)分子的运动及其在表面上的位置(以分子聚集体形式的单个分子a)。因此,这种简单的方法允许获得纳米复合薄膜,其中SMM相对于薄膜表面优先排列,如AFM和MFM图像所揭示的那样,在表面上还显示了分离的SMM。此外,聚合物基体的有利性能,例如柔韧性,透明性和低密度,使得这种材料对于潜在的应用非常令人感兴趣。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号