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Infrared-transmittance tunable metal-insulator conversion device with thin-film-transistor-type structure on a glass substrate

机译:在玻璃基板上具有薄膜晶体管型结构的红外线透射率可调金属-绝缘体转换装置

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Infrared (IR) transmittance tunable metal-insulator conversion was demonstrated on a glass substrate by using thermochromic vanadium dioxide (VO2) as the active layer in a three-terminal thin-film-transistor-type device with water-infiltrated glass as the gate insulator. Alternative positiveegative gate-voltage applications induce the reversible protonation/deprotonation of a VO2 channel, and two-orders of magnitude modulation of sheet-resistance and 49% modulation of IR-transmittance were simultaneously demonstrated at room temperature by the metal-insulator phase conversion of VO2 in a non-volatile manner. The present device is operable by the room-temperature protonation in an all-solid-state structure, and thus it will provide a new gateway to future energy-saving technology as an advanced smart window.
机译:在三端薄膜晶体管型器件中,通过使用热致变色二氧化钒(VO 2 )作为有源层,在玻璃基板上演示了红外(IR)透射率可调的金属-绝缘体转换。水渗透玻璃作为栅极绝缘体。交替施加正/负门极电压可诱发VO 2 通道的可逆质子化/去质子化,并同时显示了薄层电阻的两个数量级调制和IR透射率的49%调制。 VO 2 的金属-绝缘体相转化为非挥发性的室温。本装置可通过室温质子化以全固态结构操作,因此,它将作为先进的智能窗为通往未来的节能技术提供新的途径。

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