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| 1 | Uplink Grant-Free Pattern Division Multiple Access (GF-PDMA) for 5G Radio Access显示文摘Massive machine type communication(m MTC) is one of the key application scenarios for the fifth generation mobile communication(5 G). Grant-free(GF) transmission can reduce the high signaling overhead in m MTC. Non-orthogonal multiple access(NMA) can support more users for m MTC than orthogonal frequency division multiple access(OFDMA). Applying GF transmission in NMA system becomes an active topic recently. The in-depth study on applying GF transmission in pattern division multiple access(PDMA), a competitive candidate scheme of NMA, is investigated in this paper. The definition, latency and allocation of resource and transmission mechanism for GF-PDMA are discussed in detail. The link-level and system-level evaluations are provided to verify the analysis. The analysis and simulation results demonstrate that the proposed GF-PDMA has lower latency than grant based PDMA(GB-PDMA), possesses strong scalability to confront collision and provides almost 2.15 times gain over GF-OFDMA in terms of supporting the number of active users in the system. | Wanwei Tang Shaoli Kang Bin Ren Xinwei Yue | 2018 | China Communications2018,15,4: | 10 |
| 2 | Pathological changes in the lungs and lymphatic organs of 12 COVID-19 autopsy cases显示文摘Systematic autopsy and comprehensive pathological analyses of COVID-19 decedents should provide insights into the disease characteristics and facilitate the development of novel therapeutics.In this study,we report the autopsy findings from the lungs and lymphatic organs of 12 COVID-19 decedents—findings that evaluated histopathological changes;immune cell signature and inflammatory factor expression in the lungs,spleen and lymph nodes.Here we show that the major pulmonary alterations included diffuse alveolar damage,interstitial fibrosis and exudative inflammation featured with extensive serous and fibrin exudates,macrophage infiltration and abundant production of inflammatory factors(IL-6,IP-10,TNFo?and IL-I f).The spleen and hilar lymph nodes contained lesions with tissue structure disruption and immune cell dysregulation,including lymphopenia and macrophage accumulation.These findings provide pathological evidence that links injuries of the lungs and lymphatic organs with the fatal systematic respiratory and immune malfunction in critically ill COVID-19 patients. | Qian Liu Yu Shi Jun Cai Yaqi Duan Rongshuai Wang Hongyan Zhang Qiurong Ruan Jiansha Li Lei Zhao Yifang Ping Rong Chen Liang Ren Xiaochun Fei Heng Zhang Rui Tang Xi Wang Tao Luo Xindong Liu Xuequan Huang Zhenhua Liu Qilin Ao Yong Ren Jing Xiong Zhicheng He Haibo Wu Wenjuan Fu Pengnan Zhao Xinwei Chen Guoqiang Qu Yunyun Wang Xi Wang Jia Liu Dongfang Xiang Sanpeng Xu Xiaowei Zhou Qingrui Li Jinghong Ma Heng Li Jie Zhang Sizhe Huang Xiaohong Yao Yiwu Zhou Chaofu Wang Dingyu Zhang Guoping Wang Liang Liu Xiu-Wu Bian | 2020 | National Science Review2020,7,12: | 6 |
| 3 | Hierarchical graphene@MXene composite foam modified with flower-shaped FeS for efficient and broadband electromagnetic absorption显示文摘Developing high-performance broadband microwave absorption material becomes an urgent concern in the field of electromagnetic protection.In this work,an ultralight magnetic composite foam was con-structed by electrostatic self-assembly of MXene on the surface of graphene skeletons,and subsequent hydrothermal anchoring of flower-shaped FeS clusters.Under the synergistic effect of MXene coating in-creasing conductive loss and FeS clusters improving magnetic loss,the rational construction of hierarchi-cal impedance structure in foam can effectively promote the entrance and consumption of more incident electromagnetic waves.The minimum reflection loss(RL min)reaches-47.17 dB at a thickness of 4.78 mm,and the corresponding effective absorption bandwidth(EAB)is up to 6.15 GHz.More importantly,the microwave absorption performance of composite foam can be further optimized by controlling the load-ing of MXene and thermal treatment at a low temperature.The maximum of EAB for GMF-300 can be extended to an unprecedented value of 11.20 GHz(covering 6.10-17.30 GHz). | Shuangshuang Li Xinwei Tang Xu Zhao Shijie Lu Jiangtao Luo Zheyuan Chai Tiantian Ma Qianqian Lan Piming Ma Weifu Dong Zicheng Wang Tianxi Liu | 2023 | Journal of Materials Science & Technology2023,,2: | 4 |
| 4 | Ultralight and ordered lamellar polyimide-based graphene foams with efficient broadband electromagnetic absorption显示文摘The development of high-performance microwave absorption materials with strong absorption capacity and broad bandwidth is highly desirable in the field of electromagnetic pollution protection.Herein,ultralight polyimide-based graphene foam with ordered lamellar structure is precisely designed and controllably constructed by bidirectional freezing process.More lamellar interfaces formed inside the foam per unit volume effectively facilitate the layer-by-layer dissipation for the vertical incident electromagnetic waves,thereby endowing the foam with efficient broadband electromagnetic absorption performance.More importantly,electromagnetic absorption performance can be controllably adjusted by optimizing impedance distribution and microstructure of skeletons.As a result,the optimized foam with an ultralow density of 9.10 mg/cm^(3)presents a minimum reflection loss value of-61.29 dB at 9.25 GHz and an effective absorption bandwidth of 5.51 GHz(7.06-12.57 GHz,covering the whole X band) when the thickness is 4.75 mm. | Yawei Zhang Shuangshuang Li Xinwei Tang Wei Fan Qianqian Lan Le Li Piming Ma Weifu Dong Zicheng Wang Tianxi Liu | 2022 | Journal of Materials Science & Technology2022,,7: | 3 |
| 5 | Time-Domain Analysis of Underground Station-Layered Soil Interaction Based on High-Order Doubly Asymptotic Transmitting Boundary显示文摘Based on the modified scale boundary finite element method and continued fraction solution,a high-order doubly asymptotic transmitting boundary(DATB)is derived and extended to the simulation of vector wave propagation in complex layered soils.The high-order DATB converges rapidly to the exact solution throughout the entire frequency range and its formulation is local in the time domain,possessing high accuracy and good efficiency.Combining with finite element method,a coupled model is constructed for time-domain analysis of underground station-layered soil interaction.The coupled model is divided into the near and far field by the truncated boundary,of which the near field is modelled by FEM while the far field is modelled by the high-order DATB.The coupled model is implemented in an open source finite element software,OpenSees,in which the DATB is employed as a super element.Numerical examples demonstrate that results of the coupled model are stable,accurate and efficient compared with those of the extended mesh model and the viscous-spring boundary model.Besides,it has also shown the fitness for long-time seismic response analysis of underground station-layered soil interaction.Therefore,it is believed that the coupled model could provide a new approach for seismic analysis of underground station-layered soil interaction and could be further developed for engineering. | Tingjin Liu Siyuan Zheng Xinwei Tang Yichao Gao | 2019 | Computer Modeling in Engineering & Sciences2019,,9: | 2 |
| 6 | Ultrathin,flexible,and oxidation-resistant MXene/graphene porous films for efficient electromagnetic interference shielding显示文摘Designing and fabricating efficient electromagnetic interference(EMI)shielding materials becomes a significant and urgent concern.Hence,a novel ultrathin,flexible,and oxidation-resistant MXene-based graphene(M-rGX)porous film is successfully fabricated by electrostatic self-assembly between MXene and graphene oxide(GO)nanosheets,and subsequently thermal annealing under hydrogen-argon atmosphere.The rapid breakaway of functional groups on GO and MXene sheets induces formation of porous conductive network in film,thereby facilitating efficient shielding for incident electromagnetic waves.The optimal absolute shielding effectiveness(SSE/t)value of 76,422 dB·cm2·g−1 can be achieved at a thinner thickness of 15μm.More importantly,the effective removal of functional groups on MXene conspicuously improves the oxidation resistance of the film,endowing it with an excellent durability(12 months)in EMI shielding performance. | Xinwei Tang Jiangtao Luo Zhiwei Hu Shijie Lu Xiaoyi Liu Shuangshuang Li Xu Zhao Zihang Zhang Qianqian Lan Piming Ma Zicheng Wang Tianxi Liu | 2023 | Nano Research2023,16,1: | 1 |
| 7 | Identification of hub genes and their novel diagnostic and prognostic significance in pancreatic adenocarcinoma显示文摘Objective:The main reasons for the poor prognoses of pancreatic adenocarcinoma(PA)patients are rapid early-stage progression,advanced stage metastasis,and chemotherapy resistance.Identification of novel diagnostic and prognostic biomarkers of PA is therefore urgently needed.Methods:Three mRNA microarray datasets were obtained from the Gene Expression Omnibus database to select differentially expressed genes(DEGs).Gene Ontology(GO)and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analyses for hub genes were performed using DAVID.Correlations between expression levels of hub genes and cancer-infiltrating immune cells were investigated by TIMER.Cox proportional hazard regression analyses were also performed.Serum hub genes were screened using the HPA platform and verified for diagnostic value using ELISAs.Results:We identified 59 hub genes among 752 DEGs.GO analysis indicated that these 59 hub genes were mainly involved in the defense response to viruses and the type I interferon signaling pathway.We also discovered that RSAD2 and SMC4 were associated with immune cell infiltration in the PA microenvironment.Additionally,DLGAP5 mRNA might be used as an independent risk factor for the prognoses of PA patients.Furthermore,the protein encoded by ISG15,which exists in peripheral blood,was validated as a potential diagnostic biomarker that distinguished PA patients from healthy controls(area under the curve:0.902,95%confidence interval:0.819–0.961).Conclusions:Our study suggested that RSAD2 and SMC4 were associated with immune cell infiltration in the PA microenvironment,while DLGAP5 mRNA expression might be an independent risk factor for the survival prognoses of PA patients.Moreover,ELISAs indicated that serum ISG15 could be a potential novel diagnostic biomarker for PA. | Duo Zuo Yongzi Chen Xinwei Zhang Zhuozhi Wang Wenna Jiang Fan Tang Runfen Cheng Yi Sun Lu Sun Li Ren Rui Liu | 2022 | Cancer Biology & Medicine2022,19,7: | 1 |
| 8 | The formation age and evolution of Kumtagh Desert显示文摘The ancient aeolian sand has been regarded as an indicator for the formation and evolution of a desert in the past.Kumtagh Desert is located at the northern fringe of Qinghai-Tibet Plateau.The first integrated scientific investigation to the desert was carried out during the period of 2004-2006.Kumtagh Desert is an ideal natural model for studying the formation and evolution of the desert because the Quaternary strata containing ancient aeolian sands are widely distributed.The integrated field investigation and studies on sedimentary,chronology and palynology of typical profiles named Suosuo gully,Xiaoquan gully and gravel body with ancient aeolian sand layers showed that Kumtagh Desert was probably formed as early as 2,097.7±314.7 ka BP.During the period of 386.9±58.0 ka BP to 285.9±42.9 ka BP,the desert largely expanded and formed its modern distribution pattern.The desert was originally developed in the southwest,subsequently,expanded to the north and northeast.The sedimentary facies of Suosuo gully profile revealed that the desert experienced at least 19 cycles of advance and inverse processes of desertification with an average period of 110 ka in the Quaternary.The neotectonic movements played an important role in the formation,development and geomorphology of the desert.On one hand,the movements caused the formation of intermontane fault basin,which was further developed towards the closed drought basin,and caused the formation of natural environment.On the other hand,under the control of surrounding faults,the unique broom-shaped desert landscape was formed,and the gullies and sand ridges in this region experienced an abrupt directional change from north by west to north by east at the location of 39°45'-39°55'N.The unique landscape of gravel body that occurred widely in the northern desert was formed after 285.9±42.9 ka BP.The results in this paper provide the scientific basis for studying the formation age and evolutionary process under the dry climate and environment in the northwestern China,and the uplifting of Qinghai-Tibet Plateau as well as its responses to the global climate changes. | JinNian TANG ZhiZhu SU Feng DING ShuJuan ZHU YouHao E XinWei ZHAI ZhiYu Yl HuJun LIU JinChun ZHANGI FaMing LI | 2011 | Journal of Arid Land2011,3,2: | 1 |
| 9 | Study on the heterogeneity of concrete and its failure behavior using the equivalent probabilistic model显示文摘 | TANG Xinwei ZHOU Yuande ZHANG Chuhan | | 0,,4: | 1 |
| 10 | Mechanism of promoted dipeptide formation on hydroxyapatite crystal surfaces显示文摘The formation of dipeptides from amino acids can be driven by hydroxyapatite at a relatively low temperature in air. For example, the formation of (Ala)2 from Ala is induced on hydroxyapatite at 110°C with considerable yield. Typically, condensing agents, high temperatures (>250°C) or high pressures (>25 MPa) are required to drive the condensation of amino acids. Similar effects are observed in the condensation of Gly, Glu and Asp. Experiments demonstrate that hydroxyapatite is an effective inorganic catalytic agent, reducing the activation barrier for the formation of dipeptides by more than 50%. HAP promotes condensation by adsorbing amino acid monomers in an organized manner, which decreases the distance between amino and carboxyl groups on neighboring molecules and extends the contact time of the reaction groups. This work provides a chemical understanding of the primitive condensation of amino acids and reveals a mechanism for enhancement of mineral catalysts. It is important that the conditions used for hydroxyapatite-assisted dipeptide formation are not harsh and can be readily achieved, revealing a possible mechanism for the chemical evolution of biomolecules over geologic ages. | WU Jia ZHANG ZhiShen YU XinWei PAN HaiHua JIANG WenGe XU XuRong TANG RuiKang | 2011 | Chinese Science Bulletin2011,56,7: | 1 |
| 11 | Nano-structured Hollow Carbon Materials from a Non-isothermal Chemical Vapor Deposition of Polyphenols显示文摘Pyrogallic acid(PG)was used as a modeling carbon source in fabricating nano-structured hollow carbon materials(HCMs)by a chemical vapor deposition(CVD)method.We found that non-isothermal deposition can improve the integrity of the obtained HCMs.The different pyrolyzed species from PG under varied temperatures lead to the temperature-dependent deposition yield,graphitization degree and morphology of the HCMs.HCMs including hollow spheres of varied sizes,cubic boxes with yolk-shell structure,nanotubes,mesoporous particles and double-shelled fibers,were prepared by using different templates,demonstrating the universality of this strategy.The carbon source has been extended to other plant polyphenols.The abundant and renewable solid precursors for CVD method endow this strategy excellent operation safety,improved storage and transportation convenience mnd low cost,mnd would boost the production of morphology-and size-controlled HCMs and their applications in the fields such as water treatment,electrode materials,adsorbent,drug delivery,and so forth. | Dongdong Li Chao Cai Shijia Yang Xun Xu Xinwei Wang Tang Zhu Jing Guo Ying Zhang Haixia Dong Xiaofeng Li Ning Zhao Jian Xu | 2020 | Chinese Journal of Chemistry2020,38,6: | 0 |
| 12 | A highly efficient protein corona-based proteomic analysis strategy for the discovery of pharmacodynamic biomarkers显示文摘The composition of serum is extremely complex,which complicates the discovery of new pharmacodynamic biomarkers via serum proteome for disease prediction and diagnosis.Recently,nanoparticles have been reported to efficiently reduce the proportion of high-abundance proteins and enrich lowabundance proteins in serum.Here,we synthesized a silica-coated iron oxide nanoparticle and developed a highly efficient and reproducible protein corona(PC)-based proteomic analysis strategy to improve the range of serum proteomic analysis.We identified 1,070 proteins with a median coefficient of variation of 12.56%using PC-based proteomic analysis,which was twice the number of proteins identified by direct digestion.There were also more biological processes enriched with these proteins.We applied this strategy to identify more pharmacodynamic biomarkers on collagen-induced arthritis(CIA)rat model treated with methotrexate(MTX).The bioinformatic results indicated that 485 differentially expressed proteins(DEPs)were found in CIA rats,of which 323 DEPs recovered to near normal levels after treatment with MTX.This strategy can not only help enhance our understanding of the mechanisms of disease and drug action through serum proteomics studies,but also provide more pharmacodynamic biomarkers for disease prediction,diagnosis,and treatment. | Yuqing Meng Jiayun Chen Yanqing Liu Yongping Zhu Yin-Kwan Wong Haining Lyu Qiaoli Shi Fei Xia Liwei Gu Xinwei Zhang Peng Gao Huan Tang Qiuyan Guo Chong Qiu Chengchao Xu Xiao He Junzhe Zhang Jigang Wang | 2022 | Journal of Pharmaceutical Analysis2022,12,6: | 0 |
| 13 | Exploiting the Direct Link in IRS Assisted NOMA Networks with Hardware Impairments显示文摘Hardware impairments(HI)are always present in low-cost wireless devices.This paper investigates the outage behaviors of intelligent reflecting surface(IRS)assisted non-orthogonal multiple access(NOMA)networks by taking into account the impact of HI.Specifically,we derive the approximate and asymptotic expressions of the outage probability for the IRS-NOMA-HI networks.Based on the asymptotic results,the diversity orders under perfect self-interference cancellation and imperfect self-interference cancellation scenarios are obtained to evaluate the performance of the considered network.In addition,the system throughput of IRS-NOMA-HI is discussed in delay-limited mode.The obtained results are provided to verify the accuracy of the theoretical analyses and reveal that:1)The outage performance and system throughput for IRS-NOMA-HI outperforms that of the IRS-assisted orthogonal multiple access-HI(IRS-OMA-HI)networks;2)The number of IRS elements,the pass loss factors,the Rician factors,and the value of HI are pivotal to enhancing the performance of IRS-NOMAHI networks;and 3)It is recommended that effective methods of reducing HI should be used to ensure system performance,in addition to self-interference cancellation techniques. | Ziwei Liu Xinwei Yue Shuo Chen Xuliang Liu Yafei Wang Wanwei Tang | 2023 | Computer Modeling in Engineering & Sciences2023,,7: | 0 |
| 14 | Copper-tetracyanoquinodimethane-derived copper electrocatalysts for highly selective carbon dioxide reduction to ethylene显示文摘As one of the most promising CO_(2)utilization techniques,electrochemical CO_(2)reduction has recently received considerable attention.Cu is a unique electrocatalyst that can convert CO_(2)to value-added multi-carbon chemicals.Nevertheless,Cu catalysts are always limited by the poor selectivity and stability.Here,we report that using copper-tetracyanoquinodimethane(CuTCNQ)derived Cu nanoparticles as efficient electrocatalysts for conversion of CO_(2)to ethylene characteristic with high selectivity and stability,showing 56%Faradaic efficiency(FE)to C2H4 at−1.3 V vs.reversible hydrogen electrode(RHE).Upon the electrochemical CO_(2)reduction,CuTCNQ slowly reconstructs to Cu nanoparticles with abundant grain boundaries and residual Cu+on the surface.Theoretical calculation and operando characterization disclose that both as-formed Cu nanoparticle grain boundaries and residual Cu+endow the catalyst with high selectivity toward ethylene.Furthermore,during the reconstruction of CuTCNQ to Cu nanoparticles,the grain boundaries Cu surface is slowly refreshed by continual addition of Cu atoms,thus inhibiting the surface passivation and guaranteeing the electrocatalytic stability. | Xuewei Huang Dawei Wang Shuhao Yan Pengfei An Jianyu Han Zhiyu Guo Xinwei Li Zhongjun Chen Lin Chang Siyu Lu Zhiyong Tang | 2022 | Nano Research2022,15,9: | 0 |
| 15 | Effects of a Combined Application of Nitrogenous and Phosphorus Fertilizers on the Growth of Pinus radiata显示文摘In the arid valley of the upper reaches of the Minjiang river,combined application tests of nitrogenous and phosphorus fertilizers were conducted to the 1-year-old seedlings of Pinus radiate to investigate the appropriate amount of fertilization,so as to provide bases of fertilization management of young P.radiate in the arid val-ley.Different combined application amounts of nitrogenous and phosphorus were studied based on the randomized blocks design.The results showed that in comparing 3 treatment groups with the control,the first and second treatments significantly increased the ground diameter and height of P.radiate,while the third treatment merely significantly increased the ground diameter.Under the conditions of this study,the recommended fertilization amount was 30 g of urea and 150 g of calcium superphosphate per plant for the one-year-old P.radiate. | Jianshe HE Qimei KANG Hua YANG Xinwei ZHU Xiaoqiang TANG Ying KANG Junfang REN Yonghong TANG Qianli LIU | 2019 | Agricultural Biotechnology2019,8,4: | 0 |
| 16 | Synthesis and biological evaluation of piperidyl benzimidazole carboxamide derivatives as potent PARP-1 inhibitors and antitumor agents显示文摘We have synthesized a series of compounds based on a piperidyl benzimidazole carboxamide structure,and tested their PARP-1 inhibitory activity,as well as cellular inhibitory activity.Some of them show great potency as PARP-1 inhibitors and antitumor activity,which are valuable for further research.In addition,the predicted ADME properties and proposed binding mode with PARP-1 of the compounds were obtained via computational simulation. | Xinwei Zhang Cunlong Zhang Lin Tang Kuan Lu Huan Zhao Weibin Wu Yuyang Jiang | 2020 | Chinese Chemical Letters2020,31,1: | 0 |
| 17 | Solvothermal synthesis of Co_(1-x)Ni_xFe_2O_4 nanoparticles and its application in ammonia vapors detection | Ya Tang a,b,Xinwei Wang a,Qinghong Zhang b,Yaogang Li a,n,Hongzhi Wang b a State Key Laboratory for Modification of Chemical Fibers and Polymer Materials,Donghua University,Shanghai 201620,People’s Republic of China b College of Materials Science and Engineering,Donghua University,Shanghai 201620,People’s Republic of China | 2012 | Progress in Natural Science:Materials International2012,22,1: | 0 |
| 18 | F-doped orthorhombic Nb_(2)O_(5) exposed with 97% (100) facet for fast reversible Liþ-Intercalation显示文摘Orthorhombic Nb_(2)O_(5)(T-Nb_(2)O_(5))is attractive for fast-charging Li-ion batteries,but it is still hard to realize rapid charge transfer kinetics for Li-ion storage.Herein,F-doped T-Nb_(2)O_(5) microflowers(F-Nb_(2)O_(5))are rationally synthesized through topotactic conversion.Specifically,F-Nb_(2)O_(5) are assembled by single-crystal nanoflakes with nearly 97%exposed(100)facet,which maximizes the exposure of the feasible Li^(+)transport pathways along loosely packed 4g atomic layers to the electrolytes,thus effectively enhancing the Li^(+)-intercalation performance.Besides,the band gap of F-Nb_(2)O_(5) is reduced to 2.87 eV due to the doping of F atoms,leading to enhanced electrical conductivity.The synergetic effects between tailored exposed crystal facets,F-doping,and ultrathin building blocks,speed up the Li^(+)/electron transfer kinetics and improve the pseudocapacitive properties of F-Nb_(2)O_(5).Therefore,F-Nb_(2)O_(5) exhibit superior rate capability(210.8 and 164.9 mAh g^(-1) at 1 and 10 C,respectively)and good long-term 10 C cycling performance(132.7 mAh g^(-1) after 1500 cycles). | Xiaodi Liu Yufeng Tang Dan Zhang Guangyin Liu Xinwei Luo Yi Shang Xiu Li Jianmin Ma | 2024 | Green Energy & Environment2024,9,4: | 0 |