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Tuning Exchange Interactions in Organometallic Semiconductors

机译:调整有机金属半导体中的交换交互

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Organic semiconductors are emerging as a leading area of research as they are expected to overcome limitations of inorganic semiconductor devices for certain applications where low cost manufacturing, device transparency in the visible range or mechanical flexibility are more important than fast switching times. Solution processing methods produce thin films with millimeter sized crystalline grains at very low cost manufacturing prices, ideally suited for optical spectroscopy investigations of long range many-body effects in organic systems. To this end, we synthesized an entire family of organosoluble 3-d transition metal Pc's and successfully employed a novel solution-based pen-writing deposition technique to fabricate long range ordered thin films of mixtures of metal-free (H_2Pc) molecule and organometallic phthalocyanines (MPc's). Our previous studies on the parent MPc crystalline thin films identified different electronic states mediating exchange interactions in these materials. This understanding of spin-dependent exchange interaction between delocalized π-electrons with unpaired d spins enabled the further tuning of these interactions by mixing CoPc and H_2Pc in different ratios ranging from 1:1 to 1000:1 H_2Pc:MPc. The magnitude of the exchange is also tunable as a function of the average distance between unpaired spins in these materials. Furthermore, high magnetic field (B < 25T) MCD and magneto-photoluminescence show evidence of spin-polarized band-edge excitons in the same materials.
机译:有机半导体正在成为研究的主要领域,因为它们有望克服对于其中低成本制造,装置透明度在可见光范围内的或机械的灵活性比快速开关时间更重要的某些应用无机半导体装置的限制。溶液加工方法生产的薄膜具有毫米以非常低的成本制造价格尺寸晶粒,理想地适合于在有机系统长距离多体效应光学光谱调查。为此,我们合成的有机可溶3- d过渡金属PC的整个家庭和成功地采用了一种新的基于溶液的笔式沉积技术来制造长程有序的金属 - 自由(H_2Pc)分子和有机金属酞菁的混合物的薄膜(MPC是)。我们以前对父母的研究MP的晶薄膜识别不同的电子状态调解在这些材料中交流互动。 1至1000:1 H_2Pc:MP的离域π电子与未配对d自旋之间自旋相关的交换作用的这种理解在不同的比例从1混合酞菁钴和H_2Pc启用这些相互作用的进一步调整。交换的大小也是可调的,如这些材料未配对的自旋之间的平均距离的函数。此外,高磁场(B <25T)MCD和磁 - 光致发光中的相同的材料的自旋极化带边激子的节目的证据。

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