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      • KCI등재

        Flexible Cu2O/Cu film self-powered photodetector for high visible light selection and fast response

        Liu Yonghao,Zhao Dawei,Sun Ximing,Cui Feng,Zhang Shan,Shang Xue,Xuan Zhen,Xiao Juqing,Wang Jiapeng,Ren Yandong 한국물리학회 2024 Current Applied Physics Vol.58 No.-

        Spectral selection is one of the key performance parameters for visible light photodetectors (VLPD). However, as the absorbing layer of the VLPD, the semiconductor has strong ultraviolet light absorption, leading to poor visible light selectivity of the VLPD. This work fabricated a flexible photovoltaic VLPD based on Cu2O/Cu Schottky junction by annealing Cu foil. Under zero bias, the Cu2O/Cu VLPD showed the responsivity of 14 mA/W, the response time of 1 ms, and the detectivity of 8.8 × 1011 Jones to 620 nm light. Moreover, the detection band of the device is in the range of 500–640 nm, indicating excellent visible light selectivity. Optical and electrical characterization shows that the high visible selectivity of the device is mainly attributed to the fact that the penetration depth of visible light in Cu2O film matches the position of the Cu2O/Cu Schottky junction. This, in turn, induces the effective separation of the photogenerated carriers excited by the visible light. In addition, the bend detection performance of the device is demonstrated. This work provides a reference for improving the spectral selectivity of visible photodetectors.

      • KCI등재

        State-of-the-Art Review on Topology and Deductive Methods of LLC Resonant Converter

        Li Yazhuo,Cheng Xu-Feng,Zhao Jiapeng,Zhao Qianqi,Li He,Zhang Yu,Hao Xin 대한전기학회 2024 Journal of Electrical Engineering & Technology Vol.19 No.4

        The LLC resonant converter has many advantages, such as low operating loss, wide output range, small size, and simple structure. It is widely used in the fi elds of automobile charging, special power supply, and new energy power generation. Topology is a very important part of the LLC resonant converter. However, at present, the overview of LLC resonant converter topology only briefl y summarizes some traditional topologies, which cannot cover the emerging new topologies. In this paper, the topology and deductive methods of LLC resonant converter, which concerns the literatures in the past fi ve years, are reviewed. At the same time, for the integrity of this article, the modulation strategy of the LLC converter is introduced briefl y. This paper fi rstly introduces the basic working principle and characteristics of the LLC resonant converter, and then discusses the basic topology and modulation strategy of the LLC resonant converter. Classifi cation and deductive methods of related topologies are summarized in detail, and the related results help engineers analyze, select, and design LLC resonant converters. Finally, the future development trend of LLC resonant converter is predicted and discussed according to the status of industrial applications.

      • KCI등재

        Identification and confirmation of 14-3-3 ζ as a novel target of ginsenosides in brain tissues

        Feiyan Chen,Lin Chen,Weifeng Liang,Zhengguang Zhang,Jiao Li,Wan Zheng,Zhu Zhu,Jiapeng Zhu,Yunan Zhao 고려인삼학회 2021 Journal of Ginseng Research Vol.45 No.4

        Background: Ginseng can help regulate brain excitability, promote learning and memory, and resist cerebral ischemia in the central nervous system. Ginsenosides are the major effective compounds of Ginseng, but their protein targets in the brain have not been determined. Methods: We screened proteins that interact with the main components of ginseng (ginsenosides) by affinity chromatography and identified the 14-3-3 ζ protein as a potential target of ginsenosides in brain tissues. Results: Biolayer interferometry (BLI) analysis showed that 20(S)-protopanaxadiol (PPD), a ginseng saponin metabolite, exhibited the highest direct interaction to the 14-3-3 ζ protein. Subsequently, BLI kinetics analysis and isothermal titration calorimetry (ITC) assay showed that PPD specifically bound to the 14-3-3 ζ protein. The cocrystal structure of the 14-3-3 ζ protein-PPD complex showed that the main interactions occurred between the residues R56, R127, and Y128 of the 14-3-3 ζ protein and a portion of PPD. Moreover, mutating any of the above residues resulted in a significant decrease of affinity between PPD and the 14-3-3 ζ protein. Conclusion: Our results indicate the 14-3-3 ζ protein is the target of PPD, a ginsenoside metabolite. Crystallographic and mutagenesis studies suggest a direct interaction between PPD and the 14-3-3 ζ protein. This finding can help in the development of small-molecular compounds that bind to the 14-3-3 ζ protein on the basis of the structure of dammarane-type triterpenoid.

      • SCIESCOPUSKCI등재

        A real-time sorting algorithm for in-beam PET of heavy-ion cancer therapy device

        Ke, Lingyun,Yan, Junwei,Chen, Jinda,Wang, Changxin,Zhang, Xiuling,Du, Chengming,Hu, Minchi,Yang, Zuoqiao,Xu, Jiapeng,Qian, Yi,She, Qianshun,Yang, Haibo,Zhao, Hongyun,Pu, Tianlei,Pei, Changxu,Su, Hong Korean Nuclear Society 2021 Nuclear Engineering and Technology Vol.53 No.10

        A real-time digital time-stamp sorting algorithm used in the In-Beam positron emission tomography (In-Beam PET) is presented. The algorithm is operated in the field programmable gate array (FPGA) and a small amount of registers, MUX and memory cells are used. It is developed for sorting the data of annihilation event from front-end circuits, so as to identify the coincidence events efficiently in a large amount of data. In the In-Beam PET, each annihilation event is detected by the detector array and digitized by the analog to digital converter (ADC) in Data Acquisition Unit (DAQU), with a resolution of 14 bits and sampling rate of 50 MS/s. Test and preliminary operation have been implemented, it can perform a sorting operation under the event count rate up to 1 MHz per channel, and support four channels in total, count rate up to 4 MHz. The performance of this algorithm has been verified by pulse generator and <sup>22</sup>Na radiation source, which can sort the events with chaotic order into chronological order completely. The application of this algorithm provides not only an efficient solution for selection of coincidence events, but also a design of electronic circuit with a small-scale structure.

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