Black Phosphorus—Diketopyrrolopyrrole Polymer Semiconductor Hybrid for Enhanced Charge Transfer and Photodetection
Black phosphorus (BP) has emerged as an exciting 2D material for optics, photonics, and electronics. However, there are few studies on BP in terms of modulation and enhancement of their electronic and optical properties and their concurrent reactivity and hence reduction after exposure to the ambien...
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2021
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oai:doaj.org-article:6989e2c7fd5b4c3996bbad1404343d2e2021-11-04T09:00:27ZBlack Phosphorus—Diketopyrrolopyrrole Polymer Semiconductor Hybrid for Enhanced Charge Transfer and Photodetection2699-929310.1002/adpr.202100150https://doaj.org/article/6989e2c7fd5b4c3996bbad1404343d2e2021-11-01T00:00:00Zhttps://doi.org/10.1002/adpr.202100150https://doaj.org/toc/2699-9293Black phosphorus (BP) has emerged as an exciting 2D material for optics, photonics, and electronics. However, there are few studies on BP in terms of modulation and enhancement of their electronic and optical properties and their concurrent reactivity and hence reduction after exposure to the ambient environment. To resolve such challenges, creating inorganic–organic hybrid materials is a suitable approach that offers significant opportunities to enhance the utility of BP by combining them with an organic material which has a complementary set of properties. Herein, a hybrid‐layered BP material coupled with a low bandgap donor–acceptor organic semiconducting polymer, selenophene‐flanked diketopyrrolopyrrole with thienyl‐vinylene‐thienyl (PDPPSe–TVT) is reported, to broaden the optical absorption and tune the ambipolar field effect transistor characteristics. A highly sensitive, nongated broadband photodetection capability of the hybrid device with a detection range from UV–vis to near‐IR (280–1050 nm) and responsivities of up to 4.22 × 103 A W−1 in ambient conditions. In addition to improved photodetection, simultaneous enhancement in both hole (71%) and electron (91%) mobilities is achieved while protecting the sensitive BP material from rapid environmental degradation. The findings therefore report a breakthrough in enhancing the utility of BP as a light‐active material for versatile photonics and electronics applications without operating in an inert environment.Mei Xian LowSruthi KuriakoseQian LiuPatrick D. TaylorDashen DongTerry Chien-Jen YangTaimur AhmedGregory WilsonMichelle J. S. SpencerSherif Abdulkader TawfikSharath SriramMadhu BhaskaranPrashant SonarSumeet WaliaWiley-VCHarticle2D materialsambient stabilitiesblack phosphorusorganic–inorganic hybrid materialsphotodetectorsApplied optics. PhotonicsTA1501-1820Optics. LightQC350-467ENAdvanced Photonics Research, Vol 2, Iss 11, Pp n/a-n/a (2021) |
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2D materials ambient stabilities black phosphorus organic–inorganic hybrid materials photodetectors Applied optics. Photonics TA1501-1820 Optics. Light QC350-467 |
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2D materials ambient stabilities black phosphorus organic–inorganic hybrid materials photodetectors Applied optics. Photonics TA1501-1820 Optics. Light QC350-467 Mei Xian Low Sruthi Kuriakose Qian Liu Patrick D. Taylor Dashen Dong Terry Chien-Jen Yang Taimur Ahmed Gregory Wilson Michelle J. S. Spencer Sherif Abdulkader Tawfik Sharath Sriram Madhu Bhaskaran Prashant Sonar Sumeet Walia Black Phosphorus—Diketopyrrolopyrrole Polymer Semiconductor Hybrid for Enhanced Charge Transfer and Photodetection |
description |
Black phosphorus (BP) has emerged as an exciting 2D material for optics, photonics, and electronics. However, there are few studies on BP in terms of modulation and enhancement of their electronic and optical properties and their concurrent reactivity and hence reduction after exposure to the ambient environment. To resolve such challenges, creating inorganic–organic hybrid materials is a suitable approach that offers significant opportunities to enhance the utility of BP by combining them with an organic material which has a complementary set of properties. Herein, a hybrid‐layered BP material coupled with a low bandgap donor–acceptor organic semiconducting polymer, selenophene‐flanked diketopyrrolopyrrole with thienyl‐vinylene‐thienyl (PDPPSe–TVT) is reported, to broaden the optical absorption and tune the ambipolar field effect transistor characteristics. A highly sensitive, nongated broadband photodetection capability of the hybrid device with a detection range from UV–vis to near‐IR (280–1050 nm) and responsivities of up to 4.22 × 103 A W−1 in ambient conditions. In addition to improved photodetection, simultaneous enhancement in both hole (71%) and electron (91%) mobilities is achieved while protecting the sensitive BP material from rapid environmental degradation. The findings therefore report a breakthrough in enhancing the utility of BP as a light‐active material for versatile photonics and electronics applications without operating in an inert environment. |
format |
article |
author |
Mei Xian Low Sruthi Kuriakose Qian Liu Patrick D. Taylor Dashen Dong Terry Chien-Jen Yang Taimur Ahmed Gregory Wilson Michelle J. S. Spencer Sherif Abdulkader Tawfik Sharath Sriram Madhu Bhaskaran Prashant Sonar Sumeet Walia |
author_facet |
Mei Xian Low Sruthi Kuriakose Qian Liu Patrick D. Taylor Dashen Dong Terry Chien-Jen Yang Taimur Ahmed Gregory Wilson Michelle J. S. Spencer Sherif Abdulkader Tawfik Sharath Sriram Madhu Bhaskaran Prashant Sonar Sumeet Walia |
author_sort |
Mei Xian Low |
title |
Black Phosphorus—Diketopyrrolopyrrole Polymer Semiconductor Hybrid for Enhanced Charge Transfer and Photodetection |
title_short |
Black Phosphorus—Diketopyrrolopyrrole Polymer Semiconductor Hybrid for Enhanced Charge Transfer and Photodetection |
title_full |
Black Phosphorus—Diketopyrrolopyrrole Polymer Semiconductor Hybrid for Enhanced Charge Transfer and Photodetection |
title_fullStr |
Black Phosphorus—Diketopyrrolopyrrole Polymer Semiconductor Hybrid for Enhanced Charge Transfer and Photodetection |
title_full_unstemmed |
Black Phosphorus—Diketopyrrolopyrrole Polymer Semiconductor Hybrid for Enhanced Charge Transfer and Photodetection |
title_sort |
black phosphorus—diketopyrrolopyrrole polymer semiconductor hybrid for enhanced charge transfer and photodetection |
publisher |
Wiley-VCH |
publishDate |
2021 |
url |
https://doaj.org/article/6989e2c7fd5b4c3996bbad1404343d2e |
work_keys_str_mv |
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1718444965093179392 |