arrow
Return

Ternary Compensation Enables High-sensitive Efficient Upconversion Device for NIR Visualization

delete2024-12-06
delete0
PRE
AI
S
Shilong Dong
J
Jin Li
T
Tianjiao Ma
M
Ming Zhang
朱磊 (Lei Zhu)
X
Xiaxin Gao
M
Manping Ma
W
Wenqiang Yuan
Z
Zaiyu Wang
刘锋 cover
刘锋 (Feng Liu)
姜学松 (Xuesong Jiang) *
DOI:10.1002/adma.202412678delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Beyond the crystalline photodiodes for infrared visualization, with the limitation of opacity and complex lithographic processes, organic upconversion device (UCD) have emerged as a potential alternative. In this research, a ternary compensation strategy is implemented in a non-fullerene-based active layer to reduce the dark current of the detector and enhance its detection performance, which enables high-sensitive efficient upconversion device for near-infrared light (NIR) visualization. The device achieves an infrared-to-visible upconversion efficiency of 16.68% when resolving the 980 nm infrared signal at a power density of 0.4 mW cm-2. In addition, by replacing the semitransparent matrix electrodes, a large-area (12.25 cm2) is further fabricated, lightweight (6.5 g containing encapsulation), pixel-less (equivalent resolution 1270 ppi), and semitransparent (AVT approximate to 40%) UCD with microsecond response time. The fabricated UCD is demonstrated in pixel-less active infrared naked-eye visualization and infrared counter-surveillance, fostering the advancement of infrared visualization technology.
Keywords:
NIR photodetection
NIR visualization
organic upconversion devices
ternary compensation
wearability

Journal

Advanced Materials cover
Advanced Materials
IF:
26.8
Papers:
3.4W
Citations:
46.0W

Organization

S
shanghai jiao tong university
Scholars:
15.5W
Papers: 11.6W
Citations: 159