Dual-benefit strategy for developing an efficient photodetector with prompt response to UV-near IR radiations: in situ synthesis and crystallization through a simple one-step annealing
暂无分享,去创建一个
[1] Baoqing Zhang,et al. High-Performance Photodetectors Based on Semiconducting Graphene Nanoribbons , 2023, Nano letters.
[2] J. Ho,et al. Lattice-mismatch-free construction of III-V/chalcogenide core-shell heterostructure nanowires , 2023, Nature communications.
[3] H. Tai,et al. Organic photodiodes with bias-switchable photomultiplication and photovoltaic modes , 2023, Nature communications.
[4] Zai‐xing Yang,et al. Tunable Contacts of Bi2 O2 Se Nanosheets MSM Photodetectors by Metal-Assisted Transfer Approach for Self-Powered Near-Infrared Photodetection. , 2023, Small.
[5] X. Fang,et al. Designing Ordered Organic Small-Molecule Domains for Ultraviolet Detection and Micrometer-Sized Flexible Imaging. , 2023, Nano letters.
[6] Ziqing Li,et al. Low-dimensional wide-bandgap semiconductors for UV photodetectors , 2023, Nature Reviews Materials.
[7] Jingzheng Li,et al. Progress in Bioinspired Photodetectors Design for Visual Information Processing , 2023, Advanced Functional Materials.
[8] Qianqian Wang,et al. Efficient All‐Polymer Photomultiplication‐Type Organic Photodetectors with Prolonged Crystallization Process , 2023, Advanced Functional Materials.
[9] A. Dimitrakopoulou-Strauss,et al. Enhanced sub-1 eV detection in organic photodetectors through tuning polymer energetics and microstructure , 2023, Science advances.
[10] J Zhang,et al. Toward High Bias‐Stress Stability P‐Type GaSb Nanowire Field‐Effect‐Transistor for Gate‐Controlled Near‐Infrared Photodetection and Photocommunication , 2023, Advanced Functional Materials.
[11] Weida Hu,et al. Next‐Generation Photodetectors beyond Van Der Waals Junctions , 2023, Advanced materials.
[12] D. Kalyon,et al. Twisted Crystalline Organic Semiconductor Photodetectors , 2023, Advanced Functional Materials.
[13] Chih‐Ping Chen,et al. Highly Efficient Ternary Near-Infrared Organic Photodetectors for Biometric Monitoring. , 2023, ACS applied materials & interfaces.
[14] Zhen Wen,et al. Recent Progress of Flexible Photodetectors Based on Low‐Dimensional II–VI Semiconductors and Their Application in Wearable Electronics , 2022, Advanced Functional Materials.
[15] F. Würthner,et al. Wavelength and Polarization Sensitive Synaptic Phototransistor Based on Organic n-type Semiconductor/Supramolecular J-Aggregate Heterostructure. , 2022, ACS nano.
[16] Yang Tan,et al. Flexible Omnidirectional Self-Powered Photodetectors Enabled by Solution-Processed Two-Dimensional Layered PbI2 Nanoplates. , 2022, ACS applied materials & interfaces.
[17] Bin Wang,et al. Ultraflexible and Ultrasensitive Near‐Infrared Organic Phototransistors for Hemispherical Biomimetic Eyes , 2022, Advanced Functional Materials.
[18] Y. Chang,et al. Bulk-Heterojunction Adjustment Enables a Self-filtering Organic Photodetector with a Narrowband Response. , 2022, ACS applied materials & interfaces.
[19] Kecheng Zhang,et al. Zinc-catecholete frameworks biomimetically grown on marine polysaccharide microfibers for soft electronic platform , 2022, Nano Research.
[20] Yanyan Fu,et al. Efficient Optoelectronic Devices Enabled by Near-Infrared Organic Semiconductors with a Photoresponse beyond 1050 nm. , 2022, ACS applied materials & interfaces.
[21] Jiayue Han,et al. Recent Progress in 2D Inorganic/Organic Charge Transfer Heterojunction Photodetectors , 2022, Advanced Functional Materials.
[22] J. Ho,et al. Highly Efficient Full van der Waals 1D p‐Te/2D n‐Bi2O2Se Heterodiodes with Nanoscale Ultra‐Photosensitive Channels , 2022, Advanced Functional Materials.
[23] Z. Liu,et al. Tuning Electronic and Morphological Properties for High‐Performance Wavelength‐Selective Organic Near‐Infrared Cavity Photodetectors , 2021, Advanced Functional Materials.
[24] Kewei Zhang,et al. Defect promoted photothermoelectric effect in densely aligned ZnO nanorod arrays for self-powered position-sensitive photodetection , 2021, Journal of Materiomics.
[25] Weifeng Zhang,et al. Synergy between Fermi Level of Graphene and Morphology of Polymer Film Allows Broadband or Wavelength‐Sensitive Photodetection , 2021, Advanced Materials Interfaces.
[26] K. Vandewal,et al. Wavelength‐Selective Organic Photodetectors , 2021, Advanced Functional Materials.
[27] Xinran Wang,et al. Ultra‐Narrowband Photodetector with High Responsivity Enabled by Integrating Monolayer J‐Aggregate Organic Crystal with Graphene , 2021, Advanced Optical Materials.
[28] Yadong Jiang,et al. Organic thin film thickness-dependent photocurrents polarity in graphene heterojunction phototransistor , 2021 .
[29] Zhiming Huang,et al. Photodetectors of 2D Materials from Ultraviolet to Terahertz Waves , 2021, Advanced materials.
[30] K. Cho,et al. Atomically Smooth Graphene‐Based Hybrid Template for the Epitaxial Growth of Organic Semiconductor Crystals , 2020, Advanced Functional Materials.
[31] Cheng Lu,et al. Facilitated Interfacial Electronic Processes by the π–π Stacked Edge-on Tetrabenzoporphyrin/Graphene Layer Enables Broadband Ultrasensitive Photodetecting with Prompt Response , 2020 .
[32] Xinsheng Wang,et al. Ultralow‐Transition‐Energy Organic Complex on Graphene for High‐Performance Shortwave Infrared Photodetection , 2020, Advanced materials.
[33] D. Chung,et al. Wide-Linear-Dynamic-Range Polymer Photodiode with a New Benzo[1,2-b:4,5-b′]dithiophene-Copolymer: The Role of Crystalline Orientation , 2020 .
[34] C. Kocabas,et al. Hybrid J-Aggregate–Graphene Phototransistor , 2020 .
[35] G. Gelinck,et al. Organic Photodetectors and their Application in Large Area and Flexible Image Sensors: The Role of Dark Current , 2019, Advanced Functional Materials.
[36] T. Someya,et al. Organic Photodetectors for Next‐Generation Wearable Electronics , 2019, Advanced materials.
[37] J. Cho,et al. Photogating in Graphene-Dye-Graphene Sandwich Heterostructure. , 2019, ACS applied materials & interfaces.
[38] Xiaojie Xu,et al. Materials and Designs for Wearable Photodetectors , 2019, Advanced materials.
[39] Zhi-Yong Yang,et al. Graphene photodetector with polydiacetylenes acting as both transfer-supporting and light-absorbing layers: Flexible, broadband, ultrahigh photoresponsivity and detectivity , 2018, Carbon.
[40] Huanli Dong,et al. Organic‐Single‐Crystal Vertical Field‐Effect Transistors and Phototransistors , 2018, Advanced materials.
[41] Peng Wang,et al. Progress, Challenges, and Opportunities for 2D Material Based Photodetectors , 2018, Advanced Functional Materials.
[42] G. Konstantatos,et al. Recent Progress and Future Prospects of 2D‐Based Photodetectors , 2018, Advanced materials.
[43] Kilwon Cho,et al. Recent Advances in Morphology Optimization for Organic Photovoltaics , 2018, Advanced materials.
[44] H. Tetsuka. 2D/0D graphene hybrids for visible-blind flexible UV photodetectors , 2017, Scientific Reports.
[45] Chao Xie,et al. Photodetectors Based on Two‐Dimensional Layered Materials Beyond Graphene , 2017 .
[46] A. Amassian,et al. Morphology Development in Solution-Processed Functional Organic Blend Films: An In Situ Viewpoint. , 2017, Chemical reviews.
[47] Jinsong Huang,et al. Universal Strategy To Reduce Noise Current for Sensitive Organic Photodetectors. , 2017, ACS applied materials & interfaces.
[48] C. Wolverton,et al. Organic Dye Graphene Hybrid Structures with Spectral Color Selectivity , 2016 .
[49] Yi Shi,et al. Epitaxial Ultrathin Organic Crystals on Graphene for High‐Efficiency Phototransistors , 2016, Advanced materials.
[50] Davide Bartesaghi,et al. High gain hybrid graphene-organic semiconductor phototransistors. , 2015, ACS applied materials & interfaces.
[51] Q. Bao,et al. Broadband photodetectors based on graphene-Bi2Te3 heterostructure. , 2015, ACS nano.
[52] Shao-Yu Chen,et al. Biologically inspired graphene-chlorophyll phototransistors with high gain , 2013, 1306.3015.