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Published in 2021 at "Advanced Functional Materials"
DOI: 10.1002/adfm.202103534
Abstract: Stretchable organic solar cells (OSCs) simultaneously possessing high‐efficiency and robust mechanical properties are ideal power generators for the emerging wearable and portable electronics. Herein, after incorporating a low amount of trimethylsiloxy terminated polydimethylsiloxane (PDMS) additive,…
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Keywords:
organic solar;
intrinsically stretchable;
efficiency;
power ... See more keywords
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Published in 2024 at "Advanced Functional Materials"
DOI: 10.1002/adfm.202312289
Abstract: Stretchable organic solar cells (OSCs) with high power conversion efficiency and good mechanical deformation are promising as power sources for wearable electronics. However, synergistic improvement of both photovoltaic efficiency and mechanical ductility is challenging for…
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Keywords:
layer;
efficiency;
stretchable organic;
active layer ... See more keywords
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Published in 2024 at "Advanced Functional Materials"
DOI: 10.1002/adfm.202403770
Abstract: Skin‐like optoelectronic devices have progressed in leaps and bounds, permitting considerable applications such as remote medical diagnosis, optical communication, biometric authentication, and 3D vision imaging. However, achieving extendable imaging in such frontier detectors poses a…
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Keywords:
detection;
stretchable organic;
faint near;
intrinsically stretchable ... See more keywords
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Published in 2024 at "Advanced Functional Materials"
DOI: 10.1002/adfm.202407392
Abstract: Stretchable electrodes are critical to the development of advanced technologies such as human–machine interaction, flexible sensing, and wearable power supply, making them of significant research value. However, the current preparation methods for high‐performance stretchable electrodes…
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Keywords:
stretchable organic;
intrinsically stretchable;
composite electrodes;
solar cells ... See more keywords
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1
Published in 2022 at "Advanced Materials"
DOI: 10.1002/adma.202207006
Abstract: Stretchability is a prerequisite for electronic skin devices. However, state‐of‐the‐art stretchable thin‐film transistors do not possess sufficiently low operating voltages and good stability, significantly limiting their use in real‐world biomedical applications. Herein, a van der…
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Keywords:
voltage intrinsically;
low voltage;
intrinsically stretchable;
stretchable organic ... See more keywords
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2
Published in 2023 at "Advanced materials"
DOI: 10.1002/adma.202209906
Abstract: Flexible and stretchable bioelectronics provides a biocompatible interface between electronics and biological systems and has received tremendous attention for in-situ monitoring of various biological systems. Considerable progress in organic electronics has made organic semiconductors, as…
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Keywords:
electrochemical transistors;
organic electrochemical;
transistors physiological;
physiological sensing ... See more keywords
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Published in 2024 at "Advanced Materials"
DOI: 10.1002/adma.202413951
Abstract: Intrinsically stretchable organic electrochemical transistors (IS‐OECTs), utilizing organic mixed ionic‐electronic conductors (OMIECs) as their channel materials, have drawn great attention recently because of their potential to enable seamless integration between bioelectronic devices and living systems.…
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Keywords:
stretchable organic;
limit;
vertical structure;
organic electrochemical ... See more keywords
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Published in 2025 at "Advanced Optical Materials"
DOI: 10.1002/adom.202500106
Abstract: Polymer‐based room‐temperature phosphorescence (RTP) materials are vigorously investigated as appealing contenders for optoelectronic and bioelectronics applications, owing to their distinctive long‐lived excited‐state characteristics and inherent advantages such as low cost, remarkable functionality, and favorable biocompatibility.…
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Keywords:
stretchable organic;
rtp;
progress stretchable;
room temperature ... See more keywords
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1
Published in 2022 at "Advanced Science"
DOI: 10.1002/advs.202203418
Abstract: Intrinsically stretchable organic electrochemical transistors (OECTs) are being pursued as the next‐generation tissue‐like bioelectronic technologies to improve the interfacing with the soft human body. However, the performance of current intrinsically stretchable OECTs is far inferior…
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Keywords:
electrochemical transistors;
organic electrochemical;
intrinsically stretchable;
stretchable organic ... See more keywords
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1
Published in 2022 at "Advanced Science"
DOI: 10.1002/advs.202204727
Abstract: Polarization‐sensitive photodetectors based on anisotropic semiconductors sense both the intensity and polarization state information without extra optical components. Here, a self‐powered organic photodetector (OPD) composed of intrinsically stretchable polymer donor PNTB6‐Cl and non‐fullerene acceptor Y6…
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Keywords:
polarization;
organic semiconductors;
intrinsically stretchable;
performance polarization ... See more keywords
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Published in 2024 at "Advanced Energy Materials"
DOI: 10.1002/aenm.202304286
Abstract: The progress of stretchable and wearable photovoltaics relies heavily on intrinsically stretchable active layer films. Nevertheless, there is a paucity of research clarifying the connections between their microstructure, performance, and their adaptation to large strain…
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Keywords:
stretchable organic;
microstructural evolution;
intrinsically stretchable;
photovoltaic films ... See more keywords