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4篇 您的检索式:作者名="Linxia Yan"
    题名 作者 年代 出处 被引量
1Heavy ion micro-beam study of single-event transient(SET) in Si Ge heterjunction bipolar transistor显示文摘Silicon-germainum heterojunction bipolar transistor(Si Ge HBT)has been demonstrated to be suitable in extreme environment because of its superior temperature characteristics which can operate from 43 K to 400 K[1].In addition,outstanding hardness to both total ionizing dose(TID)radiation and displacement damage make Si Ge HBT technology particularly attractive forJinxin ZHANG Hongxia GUO Fengqi ZHANG Chaohui HE Pei LI Yunyi YAN Hui WANG Linxia ZHANG 2017Science China(Information Sciences)2017,60,12:2
2HfAlO-based ferroelectric memristors for artificial synaptic plasticity显示文摘Memristors have received much attention for their ability to achieve multi-level storage and synaptic learning.However,the main factor that hinders the application of memristors to simulate neural synapses is the instability of the formation and breakage of conductive filaments inside traditional memristors,which makes it difficult to simulate the function of biological synapses in practice.However,the resistance change of ferroelectric memristors relies on the polarization inversion of the ferroelectric thin film,thus avoiding the above problem.In this study,a Pd/HfAlO/LSMO/STO/Si ferroelectric memristor is proposed,which can achieve resistive switching properties through the combined action of ferroelectricity and oxygen vacancies.The I−V curves show that the device has good stability and uniformity.In addition,the effect of pulse sequence modulation on the conductance was investigated,and the biological synaptic function and learning behavior were simulated successfully.The results of the above studies provide a basis for the development of ferroelectric memristors with neurosynaptic-like behaviors.Jie Yang Zixuan Jian Zhongrong Wang Jianhui Zhao Zhenyu Zhou Yong Sun Mengmeng Hao Linxia Wang Pan Liu Jingjuan Wang Yifei Pei Zhen Zhao Wei Wang Xiaobing Yan 2023Frontiers of physics2023,18,6:0
3Local sustained release of PD-1 monoclonal antibody and lenvatinib by thermo-sensitive hydrogel for improving tumor immunotherapy显示文摘In clinic,the combination of intravenous pembrolizumab(PD-1 monoclonal antibody)with oral Lenvatinib(LEN)exhibited an enhanced synergistic benefit for cancer therapy.However,the clinical outcomes were always limited by the problems of inconsistent pharmacokinetic profiles of two drugs,lower drug accumulation in tumor and obvious side effects during the combination therapy.Here,in situ-forming thermosensitive hydrogels based on PLGA-PEG-PLGA triblock copolymers were prepared for local administration of anti-PD1 and LEN(P&L@Gel)to improve therapeutic efficacy and safety.After peritumoral or surgical resection site injection,the significant increased concentrations of both drugs in tumor were observed with the local sustained release of P&L@Gel.In comparison with the group of intraperitoneal anti-PD1 plus oral LEN(P-ip&L-po),significantly higher tumor inhibition efficiency on CT26 tumor models could be obtained in P&L@Gel group,even at the dose of one-eighth of the former,same tumorinhibition effects could be achieved.The enhanced antitumor efficacy of P&L@Gel group was probably associated with the 2.2 folds of increased level of CD8+T cells and the polarization of tumor associated macrophage from M2 to M1 along with the increased drug accumulation.Moreover,compared with the obvious side effects of P-ip&L-po group,no significant changes of PLT,ALT and UA in blood,as well as IL-1αand IL-1βin mice paws were observed between P&L@Gel group and untreated group.These results suggested that local administration of anti-PD1 and LEN with thermosensitive hydrogel could offer a potential strategy for tumors or tumor postoperative adjuvant treatment.Lin Zhai Yujie Shi Yi Yan An Lu Xiaoyu Liu Lei Lei Yi Sun Linxia Jiang Xiangyu Wang Honggang Qian Jiancheng Wang 2023Chinese Chemical Letters2023,34,8:0
4Catalytic hydrolysis of gaseous HCN over Cu-Ni/γ-Al2O3 catalyst: parameters and conditions显示文摘Linxia Yan Senlin Tian Jian Zhou Xin Yuan 2016Frontiers of Environmental Science & Engineering2016,10,6:0
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