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| 1 | The role of Toll-like receptors in non-infectious lung injury显示文摘在病原体识别的像使用费的受体(TLR ) 的角色在最近的年里是快速地先进的。然而,进在非传染的织物损害的 TLR 的功能的调查刚开始了。以前,我们和其它表明了那碎裂的 hyaluronan (哈) 在织物损害期间积累。CD44 被要求在织物损害期间清除 HA,并且损害了清理哈在不停的发炎的结果。另外,碎裂哈在损害地点由煽动性的房间刺激煽动性的基因的表示。最近,我们识别了那哈碎片要求 TLR2 和 TLR4 刺激老鼠巨噬细胞生产煽动性的 chemokines 和 cytokines。在一个非传染的肺损害模型,在 TLR2 和 TLR4 缺乏的老鼠显示出煽动性的房间的损害 transepithelial 迁居,增加的织物损害,提高的肺上皮的房间 apoptosis,和减少的幸存。在高分子的质量的表示上的肺上皮的房间哈对尖锐的肺损害和 apoptosis 的保护的老鼠,部分地通过 NF-kappaB 的 TLR 依赖的基础激活。在 TLR2 和 TLR4 的夸大的损害缺乏的老鼠看起来由于上皮的房间上的损害 HA-TLR 相互作用。这些研究识别那个主机矩阵部件哈并且 TLR 相互作用提供开始煽动性的回答的信号,维持上皮的房间完整,并且支持从尖锐的肺损害的恢复。房间研究(2006 ) 16:693-701。做 i:10.1038/sj .cr.7310085;出版联机 2006 年 8 月 8 日。 | Dianhua Jiang Jiurong Liang Yuhang Li Paul W Noble | 2006 | Cell Research2006,16,8: | 16 |
| 2 | Angular observation of joints of geckos moving on horizontal and vertical surfaces显示文摘Because of their outstanding climbing and motor coordination ability, geckos have provided the basis for a peculiar bionic model leading to the development of a geckorobot. A three-dimensional locomotion observation system was constructed to measure angular orientations of joints while geckos trotted (337.1 mm/s) and walked (66.7 mm/s) on horizontal surfaces, and trotted (241.5mm/s) and walked (30.6mm/s) on vertical surfaces. Moving over horizontal surfaces, the joints rotated more quickly the greater the speed, and the swinging scope of forelimbs stayed nearly at 59 degrees when swinging forward, but extended from 72 degrees to 79.2 degrees when swinging backward. The lifting angle of forelimbs was always positive to keep the center of mass close to the surface when moving up vertical surfaces, the scope of the forward swinging forelimbs forward extended from 33.7 degrees to 36.7 degrees with increasing speed, while the scope of backward swinging forelimbs remained almost the same at 87.5 degrees. Alternative gaits had little effect on the swing angle of hindlimbs of the geckos moving on both horizontal and vertical surfaces. | LI HongKai DAI ZhenDong SHI AiJu ZHANG Hao SUN JiuRong | 2009 | Chinese Science Bulletin2009,54,4: | 13 |
| 3 | Research progress in gecko locomotion and biomimetic gecko-robots显示文摘壁虎以他们的优秀能力著名爬墙并且在天花板上跑。壁虎的机车和粘合剂机制,它的 neuro 感觉、 neuro 调节的系统,它人工的 setae 数组的制造,和其它的以前的研究联系了开发,在基于壁虎、像壁虎的机器人上启发了进一步的研究。在这个区域的关键研究调查结果在现在的论文被考察。 | DAI Zhendong SUN Jiurong | 2007 | Progress in Natural Science:Materials International2007,17,1: | 12 |
| 4 | Restudies on Body Surface of Dung Beetle and Application of Its Bionics Flexible Technique显示文摘A scanning electron microscope was used to observe the structures of the setae on the surface of a dung beetle Copris ochus, Motschulsky. There are lots of setae on the body surface, especially on the ventral part surface and lateral to the legs which are different in size, arrangement and shape. These setae have different lengths and many thorns on the whole seta. The top ends of these setae stand up without furcations which direct uprightly towards the surface of the touched soil. By the method of removing these setae, getting the insect weight before and after digging into the dung we affirm farther that the setae on the beetle body surface form the anti-stick and non-adherent gentle interface. The soil machines and components made by imitating the gentle body surface of beetles have favorable non-adherent results. | Jiurong Sun 1, Jianqiao Li 2, Hong Cheng 1, Zhendong Dai 3, Luquan Ren 2 1.College of Life Sciences, Peking University, Beijing, 100871,P.R. China 2.Key Laboratory of Terrain-Machine Bionics Engineering (Ministry of Education,China), Jilin University at Nanling Campus, Changchun, 130022,P.R.China 3.College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, 210016,P.R.China | 2004 | Journal of Bionic Engineering2004,1,1: | 12 |
| 5 | Carbon-Based MOF Derivatives:Emerging Efficient Electromagnetic Wave Absorption Agents显示文摘To tackle the aggravating electromagnetic wave(EMW)pollution issues,high-efficiency EMW absorption materials are urgently explored.Metal-organic framework(MOF)derivatives have been intensively investigated for EMW absorption due to the distinctive components and structures,which is expected to satisfy diverse application requirements.The extensive developments on MOF derivatives demonstrate its significantly important role in this research area.Particularly,MOF derivatives deliver huge performance superiorities in light weight,broad bandwidth,and robust loss capacity,which are attributed to the outstanding impedance matching,multiple attenuation mechanisms,and destructive interference effect.Herein,we summarized the relevant theories and evaluation methods,and categorized the state-of-the-art research progresses on MOF derivatives in EMW absorption field.In spite of lots of challenges to face,MOF derivatives have illuminated infinite potentials for further development as EMW absorption materials. | Xue Zhang Jing Qiao Yanyan Jiang Fenglong Wang Xuelei Tian Zhou Wang Lili Wu Wei Liu Jiurong Liu | 2021 | Nano-Micro Letters2021,13,9: | 9 |
| 6 | Morphology and contact mechanics influence adhesive characteristics of Dung Beetle's bristle and Gecko's setae显示文摘Geckos(Gekko gecko)use their hairy setae to adhere on various solid surfaces and dung beetles(Copris ochus Motschulsky)use their hairy bristles to anti-adhere in sticky environments.We study why two hairy systems express a conflict in functions by using SEM,histological approaches and functional experiments.Adhesion models and various parameters were collected and analyzed.Based on the morphological data and functional experimental results carried out by natural and denatured gecko setae and beetle bristles,we first demonstrated that the stiffness along the hair is 1000 to 30000 times that perpendicular to the hair.This stiffness difference is the key factor leading to the two hairy systems' functional differences.Slope of gecko setae reduces contact stiffness,increases contact points and real contact area that results in amazing adhesive abilities.On the other hand,stiff bristles in a beetle have higher contact stiffness,which reduces the real contact area and decreases the adhesion between two contact surfaces.Deformation of gecko setae destroys the hierarchical structure,increases the contact stiffness and results in a decrease of adhesion forces.Similarly,deformation of beetle bristles destroys the erect structure of the hair,interconnects the separated bristles and thus decreases the anti-adhesive functions.These observations inspire us in designing anti-adhesive and adhesive biomimetic | Dai Zhendong Sun Jiurong Yue David Guo Ce Cheng Hong Yu Min Ji Aihong | 2007 | Progress in Natural Science:Materials International2007,17,9: | 8 |
| 7 | Upgrading a regional groundwater level monitoring network for Beijing Plain,China显示文摘地区性的地下水层次监视为确定提供重要信息环境上的地下水弄空和估计的影响。历史上,在北京平原的地下水水平监视井,中国,为估计地下水资源并且为监视消沉的锥被安装。监视井在井地和城市的区域附近被聚类。有迫切需要升级存在监视井到监视网络为综合的水资源管理获得信息的地区性的地下水水平。一个新方法为设计监视网络的地区性的地下水水平被建议。方法基于地下水政体地区印射。地下水政体地区地图描出可能的不同地下水的不同区域铺平变化并且为定位监视井的地下水是有用的。这个方法被用于平凡的北京升级监视网络的地区性的地下水水平。 | Yangxiao Zhou Dianwei Dong Jiurong Liu Wenpeng Li | 2013 | Geoscience Frontiers2013,4,1: | 8 |
| 8 | Non‑Magnetic Bimetallic MOF‑Derived Porous Carbon‑Wrapped TiO2/ ZrTiO4 Composites for Efficient Electromagnetic Wave Absorption显示文摘Modern communication technologies put forward higher requirements for electromagnetic wave(EMW)absorption materials.Metal-organic framework(MOF)derivatives have been widely concerned with its diverse advantages.To break the mindset of magneticderivative design,and make up the shortage of monometallic non-magnetic derivatives,we first try non-magnetic bimetallic MOFs derivatives to achieve efficient EMW absorption.The porous carbon-wrapped TiO2/ZrTiO4 composites derived from PCN-415(TiZr-MOFs)are qualified with a minimum reflection loss of−67.8 dB(2.16 mm,13.0 GHz),and a maximum effective absorption bandwidth of 5.9 GHz(2.70 mm).Through in-depth discussions,the synergy of enhanced interfacial polarization and other attenuation mechanisms in the composites is revealed.Therefore,this work confirms the huge potentials of nonmagnetic bimetallic MOFs derivatives in EMW absorption applications. | Jing Qiao Xue Zhang Chang Liu Longfei Lyu Yunfei Yang Zhou Wang Lili Wu Wei Liu Fenglong Wang Jiurong Liu | 2021 | Nano-Micro Letters2021,13,5: | 7 |
| 9 | Restudy of the storage and migration model of the Quaternary groundwater in Beijing Plain area显示文摘Through a wide-spread groundwater sampling mainly at nested monitoring wells in the Beijing Plain area,combined with data collection,the study analyzes water level,hydrochemistry,temperature,tritium,deuterium,18O,14C and other aspects,and indicates that there exits an obvious stratification phenomenon of the groundwater in the alluvial plain area down in the middle part of alluvial-pluvial fans,and the hydraulic connection between layers is very weak.The analysis of the tritium concentration suggests that the average influence depth of the modern precipitation is approximately 120m.Based on the analysis of the 22 paleowater samples through the D18O method and 14C isotopic dating,the deep groundwater circulation in the fine sediments area of Beijing Plain down in the fringe part of alluvial-pluvial fans is relatively slow.On average the paleowater point occurs approximately below the 180m at these points.The main reasons for the formation of stratification and paleowater points are the water-blocking effect of the clay type strata and the compaction effect during the sedimentary process,especially the differential compaction,which could form closed or relatively closed stagnant aquifers.Groundwater in this kind of stagnant aquifers to some degree belongs to non-renewable resource,and should be reconsidered and re-arranged in the water resources management strategy. | LIU YuanZhang WU Qiang LIN Pei LIU JiuRong XING LiTing GAO ZhiHui | 2012 | Science China Earth Sciences2012,55,7: | 7 |
| 10 | Full-scale tests of wind effects on a long span roof structure显示文摘Full-scale measurements are regarded as the most reliable method to evaluate wind effects on large buildings and structures. Some selected results are presented in this paper from the full-scale measurement of wind effects on a long-span steel roof structure during the passage of Typhoon Fanapi. Some fi eld data, including wind speed and direction, acceleration responses, etc., were continuously and simultaneously recorded during the passage of the typhoon. Comprehensive analysis of the measured data is conducted to evaluate the typhoon-generated wind characteristics and its effects on a long-span steel roof. The fi rst four natural frequencies and their vibration mode shapes of the Guangzhou International Sports Arena(GISA) roof are evaluated by the stochastic subspace identifi cation(SSI) method and comparisons with those from fi nite element(FE) analysis are made. Meanwhile, damping ratios of the roof are also identifi ed by the SSI method and compared with those identifi ed by the random decrement method; the amplitude-dependent damping behaviors are also discussed. The fullscale measurement results are further compared with the corresponding wind tunnel test results to evaluate its reliability. The results obtained from this study are valuable for academic and professional engineers involved in the design of large-span roof structures. | Fu Jiyang Zheng Qingxing Wu Jiurong Xu An | 2015 | Earthquake Engineering and Engineering Vibration2015,14,2: | 5 |
| 11 | Hydrogel-based composites beyond the porous architectures for electromagnetic interference shielding显示文摘With the rapid development of the electronic industry and wireless communication technology,electromagnetic interference(EMI)or pollution has been increasingly serious.This not only severely endangers the normal operation of electronic equipment but also threatens human health.Therefore,it is urgent to develop high-performance EMI shielding materials.The advent of hydrogel-based materials has given EMI shields a novel option.Hydrogels combined with conductive functional materials have good mechanical flexibility,fatigue durability,and even high stretchability,which are beneficial for a wide range of applications,especially in EMI shielding and some flexible functional devices.Herein,the current progress of hydrogel-based EMI shields was reviewed,in the meanwhile,some novel studies about pore structure design that we believe will help advance the development of hydrogel-based EMI shielding materials were also included.In the outlook,we suggested some promising development directions for the hydrogel-based EMI shields,by which we hope to provide a reference for designing hydrogels with excellent EMI shielding performance and multifunctionalities. | Yunfei Yang Mingrui Han Wei Liu Na Wu Jiurong Liu | 2022 | Nano Research2022,15,10: | 5 |
| 12 | Recent Advancements on Photothermal Conversion and Antibacterial Applications over MXenes-Based Materials显示文摘The pernicious bacterial proliferation and emergence of super-resistant bacteria have already posed a great threat to public health,which drives researchers to develop antibiotic-free strategies to eradicate these fierce microbes.Although enormous achievements have already been achieved,it remains an arduous challenge to realize efficient sterilization to cut off the drug resistance generation.Recently,photothermal therapy(PTT)has emerged as a promising solution to efficiently damage the integrity of pathogenic bacteria based on hyperthermia beyond their tolerance.Until now,numerous photothermal agents have been studied for antimicrobial PTT.Among them,MXenes(a type of two-dimensional transition metal carbides or nitrides)are extensively investigated as one of the most promising candidates due to their high aspect ratio,atomic-thin thickness,excellent photothermal performance,low cytotoxicity,and ultrahigh dispersibility in aqueous systems.Besides,the enormous application scenarios using their antibacterial properties can be tailored via elaborated designs of MXenes-based materials.In this review,the synthetic approaches and textural properties of MXenes have been systematically presented first,and then the photothermal properties and sterilization mechanisms using MXenes-based materials are documented.Subsequently,recent progress in diverse fields making use of the photothermal and antibacterial performances of MXenes-based materials are well summarized to reveal the potential applications of these materials for various purposes,including in vitro and in vivo sterilization,solar water evaporation and purification,and flexible antibacterial fabrics.Last but not least,the current challenges and future perspectives are discussed to provide theoretical guidance for the fabrication of efficient antimicrobial systems using MXenes. | Shuyan Hao Hecheng Han Zhengyi Yang Mengting Chen Yanyan Jiang Guixia Lu Lun Dong Hongling Wen Hui Li Jiurong Liu Lili Wu Zhou Wang Fenglong Wang | 2022 | Nano-Micro Letters2022,14,11: | 4 |
| 13 | Printable Aligned Single-Walled Carbon Nanotube Film with Outstanding Thermal Conductivity and Electromagnetic Interference Shielding Performance显示文摘Ultrathin,lightweight,and flexible aligned single-walled carbon nanotube(SWCNT)films are fabricated by a facile,environmentally friendly,and scalable printing methodology.The aligned pattern and outstanding intrinsic properties render“metal-like”thermal conductivity of the SWCNT films,as well as excellent mechanical strength,flexibility,and hydrophobicity.Further,the aligned cellular microstructure promotes the electromagnetic interference(EMI)shielding ability of the SWCNTs,leading to excellent shielding effectiveness(SE)of~39 to 90 dB despite a density of only~0.6 g cm^(−3) at thicknesses of merely 1.5-24μm,respectively.An ultrahigh thickness-specific SE of 25693 dB mm^(−1) and an unprecedented normalized specific SE of 428222 dB cm^(2)g^(−1) are accomplished by the freestanding SWCNT films,significantly surpassing previously reported shielding materials.In addition to an EMI SE greater than 54 dB in an ultra-broadband frequency range of around 400 GHz,the films demonstrate excellent EMI shielding stability and reliability when subjected to mechanical deformation,chemical(acid/alkali/organic solvent)corrosion,and high-/low-temperature environments.The novel printed SWCNT films offer significant potential for practical applications in the aerospace,defense,precision components,and smart wearable electronics industries. | Zhihui Zeng Gang Wang Brendan F.Wolan Na Wu Changxian Wang Shanyu Zhao Shengying Yue Bin Li Weidong He Jiurong Liu Joseph W.Lyding | 2022 | Nano-Micro Letters2022,14,11: | 4 |
| 14 | Metal sulfides based composites as promising efficient microwave absorption materials:A review显示文摘The increasingly severe electromagnetic microwave pollution raises higher requirements for the development of efficient microwave absorption(MA)materials.Metal sulfides are regarded as potential robust MA materials because of their unique optical,thermal,electrical,and magnetic properties,as well as the controllable microstructures.However,due to the limited MA performances of unary metal sulfides,morphology regulations and foreign materials hybridizations are adopted as effective strategies to improve their MA performances.Recent years witnessed the fast research progresses on the metal sulfides based MA materials and thus,a systematic literature survey on the materials design,fabrication,characterizations,MA behaviors,and the mechanisms behind is,highly desirable to summarize the rapid progress of this hot research area so as to provide guidance for the future development trend.This review firstly reviewed the research background,research progress,and basic principles of MA materials.Subsequently,the present synthetic methods and performance improvement strategies of metal sulfides based MA materials are systematically introduced.Then,by comparing the MA properties of one-dimensional,two-dimensional,and three-dimensional metal sulfides based composites,the influence of dimensionality and morphology on the MA properties are analyzed.By summarizing the research process of metal sulfides/dielectrics composites,metal sulfides/magnets composites,and metal sulfides/dielectrics/magnets composites MA materials,the influence of foreign materials hybridizations on the loss mechanisms and impedance matching conditions of metal sulfides based composites are revealed.Finally,the challenges and development prospects of metal sulfides based MA materials are presented.This review would provide a comprehensive understanding and insightful guidance for the exploration and development of efficient MA materials with thin thickness,light weight,wide absorption bandwidth,and strong absorption intensity. | Bin Li Fenglong Wang Kejun Wang Jing Qiao Dongmei Xu Yunfei Yang Xue Zhang Longfei Lyu Wei Liu Jiurong Liu | 2022 | Journal of Materials Science & Technology2022,,9: | 3 |
| 15 | Divisional and hierarchical innervations of G. gecko's toes to motion and reception显示文摘As a member of robot families, climbing robots have become one of the research hot-spots in the robotic field recently and Gekko gecko (G. gecko) has been broadly seen as an ideal model for climbing robot development. But for gecko-mimic robots, one of the key problems is how to design the robot's foot. In this paper, (1) high-speed camera recording and electrophysiological method are used to observe motion patterns of G. gecko's foot when it climbs on different oriented surfaces; (2) nerve innervations of gecko's toes to motion and reception are studied. It is found that the five toes of the G. gecko can be divided into two motion and reception divisions, and also its motion and reception are modulated and controlled hierarchically. The results provide important information and exclusive ideas for the foot design and control algorithm of gecko-mimic robots. | GUO Ce CAI Lei XIE HeRui WANG ZhouYi DAI ZhenDong SUN JiuRong | 2009 | Chinese Science Bulletin2009,54,16: | 3 |
| 16 | Shining light on transition metal sulfides:New choices as highly efficient antibacterial agents显示文摘Globally,millions of people die of microbial infection-related diseases every year.The more terrible situation is that due to the overuse of antibiotics,especially in developing countries,people are struggling to fight with the bacteria variation.The emergence of super-bacteria will be an intractable environmental and health hazard in the future unless novel bactericidal weapons are mounted.Consequently,it is critical to develop viable antibacterial approaches to sustain the prosperous development of human society.Recent researches indicate that transition metal sulfides(TMSs)represent prominent bactericidal application potential owing to the meritorious antibacterial performance,acceptable biocompatibility,high solar energy utilization efficiency,and excellent photo-to-thermal conversion characteristics,and thus,a comprehensive review on the recent advances in this area would be beneficial for the future development.In this review article,we start with the antibacterial mechanisms of TMSs to provide a preliminary understanding.Thereafter,the state-of-the-art research progresses on the strategies for TMSs materials engineering so as to promote their antibacterial properties are systematically surveyed and summarized,followed by a summary of the practical application scenarios of TMSs-based antibacterial platforms.Finally,based on the thorough survey and analysis,we emphasize the challenges and future development trends in this area. | Hecheng Han Jingjing Yang Xiaoyan Li Yuan Qi Zhengyi Yang Zejun Han Yanyan Jiang Martina Stenzel Hui Li Yixin Yin Yi Du Jiurong Liu Fenglong Wang | 2021 | Nano Research2021,14,8: | 2 |
| 17 | Nanocellulose-assisted preparation of electromagnetic interference shielding materials with diversified microstructure显示文摘Sustainable and renewable nanocellulose attracts more and more attention in various fields due to its high strength-to-weight ratio,small diameter,large aspect ratio,and abundant functional groups.The excellent properties and structural characteristics enabled a great potential of nanocellulose for efficient interactions with functional nanomaterials such as carbon nanotube,graphene,transition metal carbides/nitrides(MXenes),and metal nanoparticles,which is beneficial for preparing high-performance electromagnetic interference(EMI)shields.We review the advances in the nanocelluloseassisted preparation of composite films and aerogels for EMI shielding application.The nanocellulose-based composites are evaluated in terms of their EMI shielding performance and the shielding mechanisms,including conduction,polarization,and multiple reflections are summarized.In addition to the constituent structure and contents,we highlight the significance of the microstructure design in enhancing the EMI shielding performance of the nanocellulose-based EMI shields.Finally,the current challenges and outlook for these fascinating nanocellulose-based EMI shielding composites are discussed. | Zhihui Zeng Jing Qiao Runa Zhang Jiurong Liu Gustav Nyström | 2022 | SmartMat2022,3,4: | 2 |
| 18 | Ultralight aerogel sphere composed of nanocellulose-derived carbon nanofiber and graphene for excellent electromagnetic wave absorption显示文摘A novel type of three-dimensional ultralight aerogel sphere,consisting of one-dimensional nanocellulose-derived carbon fibers and two-dimensional graphene layers,was prepared based on a developed drop-freeze-drying followed by carbonization approach.The nanofibrous carbon efficiently prevents the agglomeration of the graphene layers,which,in turn,reduces the shrinkage and maintains the structural stability of the hybrid carbon aerogel spheres.Consequently,the aerogel spheres showing an ultralow-density of 2.8 mg/cm^(3) and a porosity of 99.98%accomplish the tunable dielectric property and electromagnetic wave(EMW)absorption performance.The high-efficiency utilization of biomass-derived fibrous nanocarbon,graphene,the porous structure of the hybrid aerogel spheres leads to the excellent EMW absorption performance.The aerogel spheres display an effective absorption bandwidth of 6.16 GHz and a minimum reflection loss of−70.44 dB even at a filler loading of merely 3 wt.%,significantly outperforming that of other biomass-derived carbon-based EMW absorbing materials.This work offers a feasible,facile,scalable approach for fabricating high-performance and sustainable biomass-based aerogels,suggesting a tremendous application potential in EMW absorption and aerospace. | Runa Zhang Bin Li Yunfei Yang Na Wu Zhuyin Sui Qingfu Ban Lili Wu Wei Liu Jiurong Liu Zhihui Zeng | 2023 | Nano Research2023,16,5: | 2 |
| 19 | Complexes based on ferrocenecarboxylate ligands: steric hindranceinduced by ferrocenyl groups 显示文摘 | Qin Suni Hu Jiurong Chen Zilu | 2011 | Journal of Coordina- tion Chemistry2011,64,37: | 1 |
| 20 | Full-scale measurements of wind effects on Guangzhou West Tower 显示文摘 | Fu Jiyang Wu Jiurong Xu An | 2012 | Engineering Structures2012,35,1: | 1 |