论文标题
DC发电从动态极化水 - 触发器界面发电
DC electricity generation from dynamic polarized water-semiconductor interface
论文作者
论文摘要
液体发电机和Hydrovoltaic技术已经引起了许多关注,可以将其分为水平运动发生器和垂直运动发生器。水平运动发生器受到限制,可以为集成和微型化的能量芯片供电,因为目前的输出方向取决于水滴的移动方向,这意味着由于长度有限的膜,几乎无法实现可持续性且连续的直流(DC)电力输出。另一方面,现有的垂直移动发电机包括摩擦式或湿度梯度的液体发电机,其中必须可持续提供液体或水资源,以确保连续的电流输出。本文中,我们通过将水滴与半导体和金属(例如石墨烯或铝制)设计了可集成的垂直发生器。该发电机被称为偏振液分子发生器(PLMG),将水滴的侧向动能转换为垂直直流电,其输出电压高达〜1.0 v,从动态水 - 触发器界面高达〜1.0 V。 PLMG的基本发现与液体分子的非对称结构,例如水和醇的非对称结构,这些结构可以在金属和半导体之间的费米水平差异引起的内置场的指导下极化,而对称液体分子在相反的相反的情况下无法产生任何电。可集成的PLMG具有〜90 NW的大输出功率,电压为〜2.7 V,与此同时,其〜250 khohm的较小的内部电阻在电阻匹配与电子组件的阻抗匹配方面具有巨大的优势。在适当的小型化和集成后,PLMG在物联网(IOT)中显示了潜在的应用值。
Liquid electricity generator and hydrovoltaic technology have received numerous attentions, which can be divided into horizontal movement generator and vertical movement generator. The horizontal movement generator is limited for powering the integrated and miniaturized energy chip as the current output direction is depending on the moving direction of the water droplet, which means a sustainable and continuous direct-current (DC) electricity output can be hardly achieved because of the film of limited length. On the other hand, the existing vertical movement generators include triboelectricity or humidity gradient-based liquid electricity generator, where the liquid or water resource must be sustainably supplied to ensure continuous current output. Herein, we have designed an integratable vertical generator by sandwiching water droplets with semiconductor and metal, such as graphene or aluminum. This generator, named as polarized liquid molecular generator (PLMG), directly converts the lateral kinetic energy of water droplet into vertical DC electricity with an output voltage of up to ~1.0 V from the dynamic water-semiconductor interface. The fundamental discovery of PLMG is related to the non-symmetric structure of liquid molecules, such as water and alcohols, which can be polarized under the guidance of built-in field caused by the Fermi level difference between metal and semiconductor, while the symmetric liquid molecules cannot produce any electricity on the opposite. Integratable PLMG with a large output power of ~90 nW and voltage of ~2.7 V has been demonstrated, meanwhile its small internal resistance of ~250 kilohm takes a huge advantage in resistance matching with the impedance of electron components. The PLMG shows potential application value in the Internet of Things (IoTs) after proper miniaturization and integration.