材料科学
串联
视网膜
光电二极管
视网膜植入物
光电子学
视觉假肢
多电极阵列
生物医学工程
微电极
红外线的
光伏系统
光学
电极
医学
化学
眼科
生物
复合材料
物理化学
物理
生态学
作者
Giulio Simone,Dario Di Carlo Rasi,Xander de Vries,Gaël H. L. Heintges,Stefan C. J. Meskers,René A. J. Janssen,Gerwin H. Gelinck
标识
DOI:10.1002/adma.201804678
摘要
Photovoltaic retinal prostheses show great potential to restore sight in patients suffering from degenerative eye diseases by electrical stimulation of the surviving neurons in the retinal network. Herein, organic photodiodes (OPDs) sensitive to near-infrared (NIR) light are evaluated as photovoltaic pixels for future application in retinal prostheses. Single-junction and tandem OPDs are compared. In the latter, two nominally identical single-junction cells are processed on top of each other, effectively doubling the open-circuit voltage (V OC ). Both single-junction and tandem OPD micropixels can deliver the required charge to stimulate neurons under pulsed NIR light at physiologically safe intensities when connected to stimulating microelectrodes in a physiological saline solution. However, only tandem OPD pixels can cover the entire charge per pulse neural stimulation window due to their higher V OC (≈1.4 V). This demonstrates the viability of high-resolution retinal prostheses based on flexible OPD arrays.
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