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      • KCI등재

        Stability Analysis of Networked Control Systems based on ℒp Properties

        Liuyang Zhou,Ying Wei 제어·로봇·시스템학회 2015 International Journal of Control, Automation, and Vol.13 No.2

        To handle the communication constraint imposed by the serial communication channel in networked control systems (NCSs), we discuss a popular dynamic scheduling protocol called Maximum- Error-First (MEF) protocol. An important parameter in this protocol is the maximum allowable transmission interval (MATI), which indicates the communication cost for the task of control. To take as large MATI as possible under the constraint of guaranteeing stability is one formalization of the design requirement to consume as little communication resources as possible with the control performances ensured. A method to estimate this parameter based on the ℒ p norm is suggested in this paper, which gives larger estimation than some methods do in the literature through simulation examples.

      • KCI등재

        Core@shell MOFs derived Co2P/CoP@NPGC as a highly-active bifunctional electrocatalyst for ORR/OER

        Weijia Gong,Hongyu Zhang,Liuyang Zhou,Ya Yang,Jiashuo Wang,Heng Liang 한국공업화학회 2022 Journal of Industrial and Engineering Chemistry Vol.106 No.-

        In this study, Co2P/CoP hybrid nanoparticles (NPs) imbedded on the surface of core–shell metal–organicframeworks (MOFs) derived three-dimensional N, P co-doped graphitized carbon (Co2P/CoP@NPGC) areprepared via direct pyrolysis of P-containing MOF precursors. P dopant dosage is tailored to adjust activesites and crystalline phases of Co2P/CoP@NPGC. The active Co2P and CoP NPs and the synergistic effectfrom the Co-Nx/C and Co-P/C active sites and porous NPGC make the dominant contributions to theORR/OER. For ORR, the half-wave potential of Co2P/CoP@NPGC-1 is 0.93 V, which is superior to that ofPt/C (E1/2 = 0.875 V). As for OER, Co2P/CoP@NPGC-1 displays a lower overpotential (ƞ = 340 mV) comparedto RuO2 (ƞ = 380 mV, at 10 mA cm2). The Co2P@CoOOH heterojunction guarantees intrinsic conductivity. Furthermore, doping with N and P can modify the surface electronic structure of catalyst to lower theenergy of oxygen adsorption and dissociation, which are beneficial to enhance the ORR and OER activity. Additionally, its bifunctional activity parameter (DE) for ORR and OER is only 0.64 V, which is lower thanthat of Pt/C and RuO2 (0.76 V). Therefore, this work proposes a new sight into constructing a competitivecore–shell MOFs derived electrocatalyst for ORR/OER.

      • KCI등재

        Investigation of Photoelectrochemical Water Splitting for Mn-Doped In2O3 Film

        Xianke Sun,Xinhe Fu,Tingting You,Qiannan Zhang,Liuyang Xu,Xiaodong Zhou,Honglei Yuan,Kuili Liu 대한금속·재료학회 2018 ELECTRONIC MATERIALS LETTERS Vol.14 No.6

        Undoped and Mn-doped In 2 O 3 fi lms were prepared by radiofrequency magnetron sputtering technique. The eff ects of Mn dopingon the structural and optical properties of as-prepared fi lms were investigated using X-ray diff raction, X-ray photoelectronspectroscopy and ultraviolet–visible spectroscopy. Mn doping can enhance the intensity of (222) peak in Mn-doped In 2 O 3thin fi lm, indicating Mn dopant promotes preferred orientation of crystal growth along (222) plane. XPS analyses revealedthat the doped Mn ions exist at + 2 oxidation states, substituting for the In 3+ sites in the In 2 O 3 lattice. UV–Vis measurementsshow that the optical band gap E g decreases from 3.33 to 2.87 eV with Mn doping in In 2 O 3 , implying an increasing sp–dexchange interaction in the fi lm. Our work demonstrates a practical means to manipulate the band gap energy of In 2 O 3 thinfi lm via Mn impurity doping, and signifi cantly improves the photoelectrochemical activity.

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