提高自组装驻极体振动能发生器的输出功率:通过改变沉积速率控制分子取向

Y. Tanaka, N. Matsuura, H. Ishii
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引用次数: 0

摘要

最近,我们开发了基于自组装驻极体(SAE)的振动能量发生器(VEG),它可以从环境振动中产生电能。该装置的优点是制备驻极体不需要任何充电过程,即SAE的表面电位(Vsp)仅通过真空沉积自然产生。这是因为Vsp来源于极性分子如Alq3和TPBi的自发取向。因此,为了提高SAE-VEG的输出功率,需要提高分子的序参量$\langle \cos \theta \rangle$。在本研究中,我们制备了不同沉积速率(rdeep)的tbi基SAE薄膜。我们发现,在4.0 Å/s的高rdep下,Vsp增大了1.8倍,这表明分子取向可以由rdep控制。结果表明,通过优化SAE的制造工艺,可以进一步提高SAE- veg的输出功率。
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Enhancement of Output Power in Self-Assembled Electret-Based Vibrational Energy Generator: Control of Molecular Orientation by Changing Deposition Rate
Recently, we developed self-assembled electret (SAE)-based vibrational energy generator (VEG) which can generate electrical power from ambient vibrations. An advantage of the device is that any charging process is not required for making electret, that is, surface potential (Vsp) of SAE naturally appears only by vacuum deposition. This is because the Vsp originates from spontaneous orientation of polar molecules such as Alq3 and TPBi. Thus, to increase output power of SAE-VEG, enhancement of order parameter of the molecule, $\langle \cos \theta \rangle$, is required. In this study, we prepared TPBi-based SAE films with various deposition rate (rdep). We found that the Vsp becomes 1.8 times larger in the case of high rdep of 4.0 Å/s, suggesting that molecular orientation can be controlled by rdep. This result indicates that further enhancement of output power in SAE-VEG can be realized through optimization of fabrication process of SAE.
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