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| 1 | Liquid-FEP-based U-tube triboelectric nanogenerator for harvesting water-wave energy显示文摘收获周围的机械精力是为认识到自我动力的电子学的一种关键技术。与稳定性和耐久性的优点, liquid-solid-based 摩擦电 nanogenerator (TENG ) 最近引起了许多注意。然而, TENG 表演和相关工作原则上的液体性质的影响仍然是不清楚的。我们此处基于液体固体模式装配了 U 试管 TENG 并且使用了 11 液体在 TENG 输出性能上学习液体性质的效果。结果证实影响产量的关键因素是极性,绝缘的常数,和与氟化的乙烯丙烯(FEP ) 的亲密关系。在 11 液体之中,纯以水为基的U试管 TENG 与开电路的电压展出了最好的产量( V 81.7 V 和电线走火电流的 oc )(我 为摇晃的模式( 0.5 Hz )的 0.26 A 的 sc ),它能推进增加到 93.0 V 和 0.48 A ,分别地为水平变模式( 1.25 Hz )。U 试管 TENG 能与比 92% 高的精确性为一个水的答案作为一个自我动力的集中传感器(部件集中或 metalion 集中) 被利用。最后,升级的像三明治的 water-FEP U 试管 TENG 被使用收获水波浪精力,显示出有 V 350 V 的 oc ,我 1.75 A 的 sc ,和 2.04 W/m 3 的力量密度。我们成功地照亮了 60 LEDs 并且动力一温度湿度米。给它的高输出性能, water-FEP U 试管 TENG 是为为自我动力的电子学收获水波浪精力的一条很有希望的途径。 | Lun Pan Jiyu Wang Peihong Wang Ruijie Gao Yi-Cheng Wang Xiangwen Zhang Ji-Jun zou Zhong Lin Wang | 2018 | Nano Research2018,11,8: | 10 |
| 2 | The effects of DS blade's geometry features on material's creep strength显示文摘Because of the better creep performance,the directional solidification(DS)Nickel-based turbine blades have been widely used in advanced aero-engines.However,the DS turbine blade's different abrupt geometrical changes at different regions cause a variation of temperature field at those regions.Subsequently,the variable temperature field is very likely to lead to a different grain structures at those different region,and those different grain structure finally give rise to a variation in material's creep performance at different region in DS turbine blade.To study the variation in creep strength among different regions of a DS turbine blade,this article designed and manufactured three types of DS specimens to simulate the geometry features of platform,shroud and body part of a typical DS turbine blade.Creep tests on these specimens were conducted under the stress level of 608 MPa and temperature of 850。C,the creep rupture life of platform-like and shroud-like specimens are 93%and 73%of body-like specimens'respectively,which support the assumption that there exists a certain variation in material's creep strength among different regions in DS turbine blades.The fracture positions of these specimens also support above conclusion.It is suggested that the material's creep strength variation among different locations of DS turbine blades should be considered in future turbine blade life design and prediction. | Xiaojun Yan Kai Zhang Ying Deng Ruijie Sun Lianshan Lin Xiaoyong Zhang | 2014 | Propulsion and Power Research2014,3,3: | 2 |
| 3 | The role of transporters in cancer redox homeostasis and cross-talk with nanomedicines显示文摘Tumor cell usually exhibits high levels of reactive oxygen species and adaptive antioxidant system due to the metabolic,genetic,and microenvironment-associated alterations.The altered redox homeostasis can promote tumor progression,development,and treatment resistance.Several membrane transporters are involved in the resetting redox homeostasis and play important roles in tumor progression.Therefore,targeting the involved transporters to disrupt the altered redox balance emerges as a viable strategy for cancer therapy.In addition,nanomedicines have drawn much attention in the past decades.Using nanomedicines to target or reset the redox homeostasis alone or combined with other therapies has brought convincing data in cancer treatment.In this review,we will introduce the altered redox balance in cancer metabolism and involved transporters,and highlight the recent advancements of redox-modulating nanomedicines for cancer treatment. | Longfa Kou Xinyu Jiang Huirong Huang Xinlu Lin Youting Zhang Qing Yao Ruijie Chen | 2020 | Asian Journal of Pharmaceutical Sciences2020,15,2: | 2 |
| 4 | Resource Allocation for Network Security Risk Assessment:A Non-Cooperative Differential Game Based Approach显示文摘In this paper, we propose a non-cooperative differential game theory based resource allocation approach for the network security risk assessment. For the risk assessment, the resource will be used for risk assess, including response cost and response negative cost. The whole assessment process is considered as a differential game for optimal resource control. The proposed scheme can be obtained through the Nash Equilibrium. It is proved that the game theory based algorithm is applicable and the optimal resource level can be achieved based on the proposed algorithm. | XU Haitao LIN Ruijie | 2016 | China Communications2016,13,4: | 1 |
| 5 | Study on the P2P Cloud Storage Architecture Based on Semantic Hypergraph显示文摘Cloud storage has the characteristics of distributed and virtual, and it makes the ownership rights and management rights of users data separated. The master-slave architecture of cloud storage has a problem of single point failure. In this paper, we provide a cloud storage architecture model based on Semantic equivalence. According to semantic matching degree, this architecture divides the nodes into node cluster by creating semantic tree and maintains system routing through semantic hypergraph. Through simulation experiments show that dividing network into semantic can enhance scalability and flexibility of the system, and it can improve the efficiency of network organization and the security of cloud storage system, at the same time, it can also reduce the cloud data storage and the delay of reading time. | SONG Ningning LIN Ruijie AN Xingshuo GONG Chao YAO Zhiyong | 2015 | China Communications2015,12,S2: | 0 |
| 6 | Observed characteristics of flow,water mass,and turbulent mixing in the Preparis Channel显示文摘Preparis Channel is the very important exchange path of energy and materials between the northern Bay of Bengal and Andaman Sea(AS).A set of hydrographic measurements,a microstructure profiler,and a deep mooring were used to determine the characteristics of water masses,turbulent mixing,and flows in the Preparis Channel.The unprecedented short-term mooring data reveal that a deep current in the deep narrow passage(below 400 m)of the Preparis Channel flows toward the Bay of Bengal(BoB)with a mean along-stream velocity of 25.26 cm/s at depth of 540 m;above the deep current,there are a relatively weak current flows toward the AS with a mean along-stream velocity of 15.46 cm/s between 500 m and 520 m,and another weak current flows toward the BoB between 430 m and 500 m.Thus,a sandwiched vertical structure of deep currents(below 400 m)is present in the Preparis Channel.The volume transport below 400 m is 0.06 Sv(1 Sv=106 m^(3)/s)from the AS to the BoB.In the upper layer(shallower than 300 m),the sea water of the AS is relatively warmer and fresher than that in the BoB,indicating a strong exchange through the channel.Microstructure profiler observations reveal that the turbulent diffusivity in the upper layer of the Preparis Channel reaches O(10−4 m^(2)/s),one order larger than that in the interior of the BoB and over the continental slope of the northern AS.We speculate that energetic high-mode internal tides in the Preparis Channel contribute to elevated turbulent mixing.In addition,a local“hotspot”of turbidity is identified at the deep mooring site,at depth of about 100 m,which corresponds to the location of elevated turbulent mixing in the Preparis Channel. | Ruijie Ye Feng Zhou Xiao Ma Dingyong Zeng Feilong Lin Hongliang Li Chenggang Liu Soe Moe Lwin Hlaing Swe Win Soe Pyae Aung | 2023 | Acta Oceanologica Sinica2023,42,2: | 0 |
| 7 | Highly Efficient Aligned Ion‑Conducting Network and Interface Chemistries for Depolarized All‑Solid‑State Lithium Metal Batteries显示文摘Improving the long-term cycling stability and energy density of all-solid-state lithium(Li)-metal batteries(ASSLMBs)at room temperature is a severe challenge because of the notorious solid–solid interfacial contact loss and sluggish ion transport.Solid electrolytes are generally studied as two-dimensional(2D)structures with planar interfaces,showing limited interfacial contact and further resulting in unstable Li/electrolyte and cathode/electrolyte interfaces.Herein,three-dimensional(3D)architecturally designed composite solid electrolytes are developed with independently controlled structural factors using 3D printing processing and post-curing treatment.Multiple-type electrolyte films with vertical-aligned micro-pillar(p-3DSE)and spiral(s-3DSE)structures are rationally designed and developed,which can be employed for both Li metal anode and cathode in terms of accelerating the Li+transport within electrodes and reinforcing the interfacial adhesion.The printed p-3DSE delivers robust long-term cycle life of up to 2600 cycles and a high critical current density of 1.92 mA cm^(−2).The optimized electrolyte structure could lead to ASSLMBs with a superior full-cell areal capacity of 2.75 mAh cm^(−2)(LFP)and 3.92 mAh cm^(−2)(NCM811).This unique design provides enhancements for both anode and cathode electrodes,thereby alleviating interfacial degradation induced by dendrite growth and contact loss.The approach in this study opens a new design strategy for advanced composite solid polymer electrolytes in ASSLMBs operating under high rates/capacities and room temperature. | Yongbiao Mu Shixiang Yu Yuzhu Chen Youqi Chu Buke Wu Qing Zhang Binbin Guo Lingfeng Zou Ruijie Zhang Fenghua Yu Meisheng Han Meng Lin Jinglei Yang Jiaming Bai Lin Zeng | 2024 | Nano-Micro Letters2024,16,5: | 0 |
| 8 | Luteolin suppresses oral carcinoma 3(OC3) cell growth and migration via modulating polo-like kinase 1(PLK1) expression and cellular energy metabolism显示文摘Oral squamous cell carcinoma(OSCC)is a prevalent malignant tumor affecting the head and neck region(Leemans et al.,2018).It is often diagnosed at a later stage,leading to a poor prognosis(Muzaffar et al.,2021;Li et al.,2023).Despite advances in OSCC treatment,the overall 5-year survival rate of OSCC patients remains alarmingly low,falling below 50%(Jehn et al.,2019;Johnson et al.,2020).According to statistics,only 50%of patients with oral cancer can be treated with surgery.Once discovered,it is more frequently at an advanced stage.In addition,owing to the aggressively invasive and metastatic characteristics of OSCC,most patients die within one year of diagnosis.Hence,the pursuit of novel therapeutic drugs and treatments to improve the response of oral cancer to medication,along with a deeper understanding of their effects. | Pengfei GAO Wentao ZHANG Yujie LIN Ruijie LU Zijian LOU Gang LU Ruolang PAN Yunfang CHEN | 2023 | Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)2023,24,12: | 0 |
| 9 | MXene-MoS_(2)nanocomposites via chemical vapor deposition with enhanced electrocatalytic activity for hydrogen evolution显示文摘As a new paradigm of material science,two-dimensional(2D)heterostructured composites have attracted extensive interests because of combining the collective advantages and collaborative characteristics of individual building blocks.Molybdenum disulfide(MoS_(2))has demonstrated great promise as a low-cost substitute to platinum-based catalysts for electrochemical hydrogen production.However,the broad adoption of MoS_(2)is hindered by its limited number of active sites and low inherent electrical conductivity.One of the promising methods to further activate MoS_(2)is coupling engineering.Here,we demonstrate for the first time the synthesis of 2D MXene-MoS_(2)nanocomposites through chemical vapor deposition(CVD)approach,thus leading to precise design in structure type and orientation.The computational results show that nanocomposites have metallic properties.Owing to their unique 2D/2D structure,MXene-MoS_(2)nanocomposites exhibit more active catalytic sites,resulting in higher electrochemical performance,as inherited from parent excellent characteristics,and a much lower overpotential of~69 mV at a current density of 10 mA·cm^(-2) is achieved.This work paves the way to employ CVD method by coupling engineering to construct 2D nanocomposites for energy storage applications. | Ruijie Zhang Yajing Sun Fei Jiao Lin Li Dechao Geng Wenping Hu | 2023 | Nano Research2023,16,7: | 0 |
| 10 | Resource Allocation in Edge-Computing Based Wireless Networks Based on Differential Game and Feedback Control显示文摘In this paper,we have proposed a differential game model to optimally solve the resource allocation problems in the edge-computing based wireless networks.In the proposed model,a wireless network with one cloud-computing center(CC)and lots of edge services providers(ESPs)is investigated.In order to provide users with higher services quality,the ESPs in the proposed wireless network should lease the computing resources from the CC and the CC can allocate its idle cloud computing resource to the ESPs.We will try to optimally allocate the edge computing resources between the ESPs and CC using the differential game and feedback control.Based on the proposed model,the ESPs can choose the amount of computing resources from the CC using feedback control,which is affected by the unit price of computing resources controlled by the CC.In the simulation part,the optimal allocated resources for users’services are obtained based on the Nash equilibrium of the proposed differential game.The effectiveness and correctness of the proposed scheme is also verified through the numerical simulations and results. | Ruijie Lin Haitao Xu Meng Li Zhen Zhang | 2020 | Computers, Materials & Continua2020,,8: | 0 |