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Optical Waveguiding Organic Nanorods Coated with Reversibly Switchable Fe(II) Spin Transition Nanoparticles

机译:可逆转换Fe(II)自旋转变纳米粒子涂层的光波导有机纳米棒。

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A dual functional nanohybrid object combining photonic and magnetic properties was successfully prepared through a “bottom-up” self-assembly approach. In this method, spin transition Fe(II) coordination nanoparticles and optical wave guiding organic nanorods were generatedin situand successfully integrated together in a single pot through self-assembly. The Fe(II) nanoparticles coated on organic nanorods (nanohybrids) display temperature dependent reversible spin transition (Paramagnetic;S=2 ↔diamagnetic;S=0) behavior. The nano-hybrids show efficient optical wave guiding behavior, which demonstrates the future possibility to perform light induced excited spin state trapping (LIESST) experiments on a single spin transition nanoparticle level. These photonic and magnetic “nanohybrids” offer promising option to externally manipulate spin state of the spin transition nanoparticles using temperature as well as remote laser light.
机译:通过“自下而上”的自组装方法成功地制备了具有光子和磁学性质的双功能纳米杂交体。在这种方法中,原位生成自旋转变Fe(II)配位纳米粒子和光波导有机纳米棒,并通过自组装将其成功整合到单个罐中。涂覆在有机纳米棒(纳米杂化物)上的Fe(II)纳米粒子表现出温度依赖性的可逆自旋跃迁(Paramagnetic; S =2↔diamagnetic; S = 0)行为。纳米杂化物表现出有效的光波导行为,这表明在单个自旋跃迁纳米粒子水平上进行光诱导的激发自旋态俘获(LIESST)实验的未来可能性。这些光子和磁性“纳米杂化物”提供了有前途的选择,可以使用温度以及远距离激光从外部控制自旋跃迁纳米粒子的自旋态。

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