论文标题
分子自旋光伏设备在透明基材上的室温操作
Room-temperature operation of a molecular spin photovoltaic device on a transparent substrate
论文作者
论文摘要
将多功能性与单个设备中的自旋相关现象结合在一起,对于开发下一代Spintronic设备的开发引起了极大的兴趣。这些挑战之一是将设备的光响应及其磁反应搭配,以利用室温下的多功能操作。在这里,提出了单层P型分子自旋阀的多功能操作,该设备在室温下在透明玻璃基板上显示出光伏效应。生成的光电压几乎是对设备所施加的偏置的三倍,该偏置促进了用偏置和光的设备调制设备的调节。可以观察到具有光和磁场的光电压调制与光强度线性。该设备在磁场下显示功率转换效率的提高,具有磁场倒流的能力,在某些条件下,它可以充当旋转射击器,在备用模式下具有零功耗。使用P型分子在单个设备中光,偏置和磁场之间相互作用的相互作用的室温开发为完整的旋转伏洛尔电细胞的更复杂和有效的操作打开了一种方式。
Incorporating multifunctionality along with the spin-related phenomenon in a single device is of great interest for the development of next generation spintronic devices. One of these challenges is to couple the photo-response of the device together with its magneto-response to exploit the multifunctional operation at room temperature. Here, the multifunctional operation of a single layer p-type molecular spin valve is presented, where the device shows a photovoltaic effect at the room temperature on a transparent glass substrate. The generated photovoltage is almost three times larger than the applied bias to the device which facilitates the modulation of the magnetic response of the device both with bias and light. It is observed that the photovoltage modulation with light and magnetic field is linear with the light intensity. The device shows an increase in power conversion efficiency under magnetic field, an ability to invert the current with magnetic field and under certain conditions it can act as a spin-photodetector with zero power consumption in the standby mode. The room temperature exploitation of the interplay among light, bias and magnetic field in the single device with a p-type molecule opens a way towards more complex and efficient operation of a complete spin-photovoltaic cell.