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        Triphenylphosphine-Containing Thermo-Responsive Copolymers: Synthesis, Characterization and Catalysis Application

        Tao Chen,Shuo Zhang,Laiyu Hua,Zhenkai Xu,Lei Zhou,Jiping Wang 한국고분자학회 2019 Macromolecular Research Vol.27 No.10

        Triphenylphosphine-containing thermo-responsive copolymers of 4- (diphenylphosphino) styrene (DPPS), di(ethylene glycol) methyl ether methacrylate (DEGMA) and oligo(ethylene glycol) methyl ether methacrylate (average molecule weight is 300, OEGMA300) were synthesized by free-radical copolymerization using azodiisobutyronitrile (AIBN) as an initiator in solution polymerization. A series of copolymers P(DEGMA-co-DPPS-co-OEGMA300) with different lower critical solution temperature (LCST) were synthesized. The synthesized copolymers were well characterized by 1H NMR, 31P NMR and gel permeation chromatography (GPC). Based on the copolymers, a thermo-responsive and water soluble assembled catalyst of palladium acetate was developed. In the presence of the thermoresponsive copolymer-supported palladium catalyst, the Suzuki-Miyaura reaction proceeded efficiently in water. The catalyst was reused at least five cycles without obvious decrease in catalytic activity and can be easily recovered by heating/centrifugation of the polymer aqueous solution.

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        Secured Green Communication Scheme for Interference Alignment Based Networks

        Zhibin Xie,Xinquan Geng,Yunfei Chen,Kening Song,Benjamin Panful,Yajun Wang,Yinjie Su,Zhenkai Zhang,Ying Hu 한국통신학회 2020 Journal of communications and networks Vol.22 No.1

        In this paper, a new security and green communicationscheme is proposed to the interference-alignment (IA) based networks. To achieve a secured communication, full-duplex receiversare utilized to transmit artificial noise (AN). Both the signals andthe ANs are used to harvest energy to realize green communication. For these reasons, the feasible conditions of this scheme areanalyzed first. Secondly, the average transmission rate, the secrecyperformance and the harvested energy are investigated. Thirdly,an optimization scheme of simultaneous wireless information andpower transfer (SWIPT) is given to optimize the information transmissionand the energy harvesting efficiency. Meanwhile, an improvedIA iteration algorithm is designed to eliminate both the ANand the interference. Furthermore, relay cooperation is consideredand its system performance is analyzed. The simulations show thatthe target average transmission rate is not affected by AN, whilethe secrecy performance can be greatly improved. The energy harvestingefficiency is also better than the traditional schemes. Asexpected, the average transmission rate further is improved withthe relay cooperation.

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