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| 1 | Path Planning for Mobile Robot Based on an Improved Probabilistic Roadmap Method显示文摘 | LIU Changan CHANG Jingang LIU Chunyang | 2009 | Chinese Journal of Electronics2009,18,3: | 13 |
| 2 | Dry deposition velocity of total suspended particles and meteorological influence in four locations in Guangzhou,China显示文摘Dry deposition velocity of total suspended particles(TSP) is an effective parameter that describes the speed of atmospheric particulate matter deposit to the natural surface.It is also an important indicator to the capacity of atmosphere self-depuration.However,the spatial and temporal variations in dry deposition velocity of TSP at different urban landscapes and the relationship between dry deposition velocity and the meteorological parameters are subject to large uncertainties.We concurrently investigated this relationship at four different landscapes of Guangzhou,from October to December of 2009.The result of the average dry deposition velocity is(1.49 ± 0.77),(1.44 ± 0.77),(1.13 ± 0.53) and(1.82 ± 0.82) cm/sec for urban commercial landscape,urban forest landscape,urban residential landscape and country landscape,respectively.This spatial variation can be explained by the difference of both particle size composition of TSP and meteorological parameters of sampling sites.Dry deposition velocity of TSP has a positive correlation with wind speed,and a negative correlation with temperature and relative humidity.Wind speed is the strongest factor that affects the magnitude of TSP dry deposition velocity,and the temperature is another considerable strong meteorological factor.We also find out that the relative humidity brings less impact,especially during the dry season.It is thus implied that the current global warming and urban heat island effect may lead to correlative changes in TSP dry deposition velocity,especially in the urban areas. | Leifu Chen Shaolin Peng Jingang Liu Qianqian Hou | 2012 | Journal of Environmental Sciences2012,24,4: | 10 |
| 3 | Surface modification of Ti-6Al-4V alloy by cathode assiting discharge setup and conventional plasma nitriding methods显示文摘In order to improve the wear resistance of titanium alloys,the potential of the plasma nitriding process with a cathode assiting discharge setup was examined.Ti6Al4V alloy was nitrided by the cathode assiting discharge nitriding(CAN) and conventional DC plasma nitriding(CPN) methods,respectively.The micro-topography,phase composition and cross-sectional microhardness distribution of two nitriding layers were studied comparatively.The sliding wear resistance of the nitriding layers was examined by a ball-on-disk test against Si3N4 balls.The results indicated that the surface roughness Ra of the CAN layer was about 1 order less than that of the CPN layer.In addition,the CAN surfaces possessed significantly greater wear resistance than the CPN layer at higher loads,and increased the wear resistance of Ti6Al4V alloy by about 2 orders due to the higher loading bearing ability,higher rate of TiN phase,greater surface microhardness and bigger microhardness improving depth.This is because the double glow discharge effect in CAN strengthened the density of the active nitrogen atoms and the nitriding efficiency.Moreover,the ion bombardment effect on the surface of the nitriding titanium alloy was reduced obviously. | TANG JinGang LIU DaoXin TANG ChangBin ZHANG XiaoHua | 2013 | Science China(Technological Sciences)2013,56,8: | 8 |
| 4 | Conductive Polyaniline/Cellulose/Graphite Composite Films with High Thermal Stability and Antibacterial Activity显示文摘Functional composite films were successfully prepared from cellulose, graphite(GP), and polyaniline(PANI) using a combination of physical and chemical processes. Cellulosewasdissolved in N-methylmorpholine-N-oxide monohydrate(NMMO) and regenerated in water to form the matrix. GP was dispersed in the NMMO solvent prior to the dissolution of the cellulose, and PANI was deposited on the surfaces of the cellulose/GP films by in situ chemical polymerization. The structures of the PANI/cellusose/GP composite films were investigated using X-ray diffraction analysis, Fourier transform infrared spectroscopy, scanning electron microscopy(SEM), and SEM/energy-dispersive X-ray spectroscopy. The mechanical strengths, thermal stabilities, conductivities, and antibacterial activities of the films were studied in detail. The results showed that GP formed a multilayered structure in the cellulose matrix and that the PANI nanoparticles were tightly wrapped on the film surface. The film thickness increased from 40 mm to 100 mm after the addition of GP and PANI. The tensile strength of the composite films was 80~107 MPa, with the elongation at break being 3%~10%. The final residual weight of the composite films was as high as 65%, and the conductivity of the composite films reached 14.36 S/m. The cellulose matrix ensured that the films were flexible and exhibited desirable mechanical properties, while the GP filler significantly improved the thermal stability of the films. The PANI coating acted as a protective layer during burning and provided good electrical conductivity and antibacterial activity against Escherichia coli; both of these characteristics were slightly enhanced by the incorporation of GP. These PANI/cellulose/GP composite films should be suitable for use in electronics, antistatic packing, and numerous other applications. | JingHuan Chen JinGang Liu WenTao Zhang Kun Wang XueRen Qian RunCang Sun | 2017 | Paper And Biomaterials2017,2,1: | 7 |
| 5 | RAPD Analysis of M_1 Generation of Gladiolus hybridus Hort Treated by EMS显示文摘Gladiolus hybridus Hort is one of the world's famous cutting flowers. It is very popular because of the big size, bright color, various shape, and long period of bloom. New species should be cultivated in order to meet the consumers' need of asking for the new. Among the technologies of cultivating new species of flowers, mutagenic breeding is a shortcut. This study treated corm bud of G. hybridus Hort with EMS of different consistency. Then M1 after treated was analyzed by RAPD. The result showed that EMS was a very effective mutagenic agent for the corm bud of G. hybridus Hort. With the increase of consistency, the mutagenic range increased first, then decreased, among which 0.6% EMS treatment had the biggest influence. However, with the same EMS consistency, there was not close relevancy between the amount of mutagenic agent and the divergence of plant's genomes, which offered a molecular basis for selecting plants with good mutation. | WANG Jingang GUO Ying CHE Daidi LIU Shenkui YANG Chuanpin | 2009 | Journal of Northeast Agricultural University(English Edition)2009,16,1: | 6 |
| 6 | Casting structure of pure aluminum by electric pulse modification at different superheated temperatures显示文摘Electric pulse modification (EPM) is a novel technique that reduces grain size by altering the structure of a melt. It was investigated that the response of the casting structure of high pure aluminum to EPM in different superheated melts. The results indi- cate that the grain refining effect of a given pulse electric field holds an optimal temperature range, moreover, a lower or higher su- perheated temperature will both disadvantage the improvements of casting structure. It essentially lies in the cooperative action be- tween the distorted absorption of clusters and the activated capability of atoms in the aluminum melt. | Jingang Qi Jianzhong Wang Xingjiang Liu Bing Wang Daqiang Cang | 2005 | Journal of University of Science and Technology Beijing2005,12,6: | 6 |
| 7 | WSe2 2D p-type semiconductor-based electronic devices for information technology:Design,preparation,and applications显示文摘The pioneering exfoliation of monolayer tungsten diselenide has greatly inspired researchers toward semiconducting applications.WSe2 belongs to a family of transition-metal dichalcogenides.Similar to graphene,WSe2 and analogous dichalcogenides have layered structures with weak van der Waals interactions between two adjacent layers.First,the readers are presented with the fundamentals of WSe2,such as types,morphologies,and properties.Here,we report the characterization principles and practices such as microscopy,spectroscopy,and diffraction.Second,the methods for obtaining high-quality WSe2,such as exfoliation,hydrothermal and chemical vapor deposition,are briefly listed.With advantages of light weight,flexibility,and high quantum efficiency,2D materials may have a niche in optoelectronics as building blocks in p-n junctions.Therefore,we introduce a state-of-the-art demonstration of heterostructure devices employing the p-type WSe2 semiconductor.The device architectures include field-effect transistors,photodetectors,gas sensors,and photovoltaic solar cells.Due to its unique electronic,optical,and energy band properties,WSe2 has been increasingly investigated due to the conductivity of the p-type charge carrier upon palladium contact.Eventually,the dynamic research on WSe2 and van der Waals heterostructures is summarized to arouse the passion of the 2D research community. | Qilin Cheng Jinbo Pang Dehui Sun Jingang Wang Shu Zhang Fan Liu Yuke Chen Ruiqi Yang Na Liang Xiheng Lu Yanchen Ji Jian Wang Congcong Zhang Yuanhua Sang Hong Liu Weijia Zhou | 2020 | InfoMat2020,2,4: | 5 |
| 8 | Pore Structure Regulation of Carboxyethylated Microfibrillated Cellulose Films显示文摘Carboxyethylation is a recent chemical pretreatment for preparation of microfibrillated cellulose(MFC).The carboxyethylated MFC film prepared by coating method has compact structure and high mechanical properties.In order to expand its application,three approaches including using organic solvents,different drying methods and cationic additives,have been adopted in this paper to enrich and regulate the pore structure of MFC film.The results show that all the approaches can improve the pore structure but decrease the mechanical properties of MFC film.When organic solvents such as ethanol,isopropanol and n-butanol were used to replace the water in MFC suspension or pre-dried MFC film,the pore structure of films were increased.Additionally,the film obtained by freeze-drying or air-drying after freezing in liquid nitrogen or freezer has high porosity but poor strength.The best drying process is to rewet dry MFC film,freeze in liquid nitrogen and then freeze-dry.Moreover,the addition of cationic polyelectrolytes or alkene ketone dimer(AKD)in MFC suspension can also significantly increase the film's porosity.Through the above approaches,the porosity of carboxyethylated MFC film can be regulated between 20% and 90%. | Meican Li Jinghuan Chen Jingang Liu Zehong Xu Yanqun Su Ruijuan Zhang Yanfen Du | 2020 | Paper And Biomaterials2020,5,2: | 5 |
| 9 | Development of Novel Visual-Plus Quantitative Analysis Systems for Studying DNA Double-Strand Break Repairs in Zebrafish显示文摘到分析 DNA 双海滨裂缝(DSB ) 的记者系统的使用修理,基于提高的绿色荧光灯蛋白质(EGFP ) 和象 I-Sce 那样的 meganuclease 我,通常与房间线被执行。在这研究,我们开发了三视觉加为相应再结合(HR ) 的量的试金系统,加入的非相应的结束(NHEJ )(SSA ) 并且单个海滨的退火在在 zebrafish 胚胎的 organismal 水平的 DSB 修理小径。为了开始 DNA DSB,修理,我们使用了二 I-Sce 我在相反的取向的识别地点而非平常的单个地点。NHEJ, HR 和 SSA 修理小径被三相应 I-Sce 我切割构造的注射独立触发,并且 DNA 损害的修理由 I-Sce 引起了我能被 EGFP 表示在胚胎追踪。除了监视绿荧光的紧张,修理频率能被量的即时聚合酶链反应(qPCR ) 精确也测量。在 DSB 地点的 DNA 序列的分析证明 NHEJ 在在 zebrafish 胚胎的这三条修理小径之中是占优势的。而且,当 HR 和 SSA 记者系统能有效地被减少由时 rad51 和 rad52 击倒分别地, NHEJ 能仅仅被损害由 ligaseIV (lig4 ) 击倒当 NHEJ 构造被 I-Sce 切时我在 vivo。更有趣地,与 lig4 瞬间堵住 NHEJ 增加了 HR 的频率,但是减少 SSA 的频率。我们的研究证明过去常修理 DNA DSB 的主要机制从 zebrafish 被保存到哺乳动物,并且 zebrafish 为在 organismal 水平学习并且操作 DNA DSB 修理提供一个优秀模型。 | Jingang Liu Lu Gong Changqing Chang Cong Liu Jinrong Peng Jun Chen | 2012 | Journal of Genetics and Genomics2012,39,9: | 4 |
| 10 | Different Kinds of Microfibrillated Cellulose as Coating Layers Providing Fiber-based Barrier Properties显示文摘In this study,we investigated the barrier properties of different kinds of microfibrillated cellulose(MFC)coating layers.The air,oxygen,and water vapor permeability,as well as the water contact angles(WCA),were measured to quantify the barrier efficacy of the applied coatings.The WCA data showed that the surfaces of MFC-coated cardboards are more hydrophilic than those of uncoated cardboards.However,different MFC coatings realize different oxygen transmission rates(OTRs)and water vapor transmission rates(WVTRs).The MFC coating derived from bleached bamboo pulp subjected to carboxyethylation pretreatment(MFCCBP)gave the best oxygen and water vapor barrier performances.The OTR of the virgin cardboard(>16500 cm^(3)/(m^(2)·24 h))decreased to 4638 cm^(3)/(m^(2)·24 h)after coating with the MFCCBP.The WVTR similarly decreased from 1016.7 g/(m^(2)·24 h)to 603.2 g/(m^(2)·24 h). | Ruijuan Zhang Yanqun Su Jingang Liu | 2021 | Paper And Biomaterials2021,6,1: | 4 |
| 11 | Characterization of increased cuticular wax mutant and analysis of genes involved in wax biosynthesis in Dianthus spiculifolius显示文摘Cuticular wax formation on the surface of plant leaves is associated with drought-stress tolerance.The identification of wax biosynthesis-related genes will contribute to the genetic improvement of drought resistance in plants.In this study,we characterize a novel Dianthus spiculifolius mutant with increased cuticular wax.The mutant exhibited stronger drought resistance as indicated by less leaf wilting and death,higher leaf relative water content and water retention capacity,and slower water loss and chlorophyll extraction than did the wild type during drought treatment.In the mutant leaves,2730 upregulated and 2151 downregulated differentially expressed genes(DEGs)were identified by transcriptome sequencing.A wax biosynthesis pathway of the identified DEGs was significantly enriched.Finally,three key genes(DsCER1,DsMAH1,and DsWSD1)involved in wax biosynthesis were identified and verified by qPCR.These results suggest that differential expression of DEGs involved in wax biosynthesis may be associated with the increase in cuticular wax in the mutant.Taken together,our results help elucidate wax formation patterns in D.spiculifolius.Furthermore,the DEGs involved in wax biosynthesis identified here may be valuable genetic resources for improving plant stress tolerance through increased accumulation of cuticular wax. | Aimin Zhou Enhui Liu Jiao Liu Shuang Feng Shufang Gong Jingang Wang | 2018 | Horticulture Research2018,5,1: | 4 |
| 12 | Amorphous red phosphorus anchored on carbon nanotubes as high performance electrodes for lithium ion batteries显示文摘 | Li Sun Yu Zhang Deyang Zhang Jingang Liu Yihe Zhang | 2018 | Nano Research2018,11,5: | 4 |
| 13 | Study on discharge characteristics and improving surface hydrophobicity of epoxy resin by nanosecond pulse excited argon/hexamethyldisiloxane jet array显示文摘Surface flashover of insulating materials induced by pollution and moisture environment is one of the main reasons for the damage of power system and electrical equipment.The improvement of the insulating materials surface hydrophobicity is key important,which can prevent the pollutants and water attachment,and enhance the insulating perfor-mance.In this paper,the super-hydrophobic film is formed on the surface of epoxy resin by a one-dimensional(1D)argon(Ar)jet array driven by nanosecond pulse power supply with hexamethyldisiloxane(HMDSO)addition.The influences of the processing time and HMDSO content on the epoxy resin surface hydrophobicity are investigated.It shows that with 0.04%HMDSO,the jet array achieves a best hydrophobic treatment effect on the epoxy resin surface.After 60 s treatment,the apparent contact angle(ACA)of the epoxy resin surface increases from 60.3°of the untreated surface to 150.0°.The wettability of epoxy resin surface does not change too much as the treatment time beyond 60 s.The maximum ACA value 153.4°appears at 120 s processing time,which is just slightly higher than that of 60 s treatment time.The epoxy resin surface morphology and chemical feature before and after plasma processing are characteristics by the scanning electron microscopy(SEM),atomic force microscopy(AFM),Fourier transform infra-red spectroscopy and X-ray photoelectron spectroscopy.It shows that the treated epoxy resin surface is covered with dense coral like particles in nanoscales,the original C=O、C-H and other organic functional groups are replaced by Si-(CH3),Si-O-Si and other silicon containing groups,and the Si content increases from 0.4%to 28.0%.The experimental results provide important references to develop jet array as an efficient tool to enhance the surface hydrophobicity and insulating performance of insulating materials. | Zhiyan Liu Jingang Xu Xi Zhu Feng Liu Zhi Fang | 2022 | High Voltage2022,7,4: | 4 |
| 14 | ADAMTS-7 promotes vascular smooth muscle cells proliferation in vitro and in vivo显示文摘Vascular smooth muscle cell(VSMC) proliferation and migration are pivotal for the pathogenesis of atherosclerosis and post-angioplasty restenosis. We have recently reported that a disintegrin and metalloproteinase with thrombospondin motifs-7(ADAMTS-7), a novel metalloproteinase, contributes directly to neointima formation by mediating VSMC migration. However, whether ADAMTS-7 affects VSMC proliferation remains unclear. In this study, we found that luminal adenoviral delivery of ADAMTS-7 aggravated intimal hyperplasia 7 d after injury, paralleled by an increased percentage of PCNA-positive cells in both intima and media. In contrast, perivascular administration of ADAMTS-7 si RNA, but not scrambled si RNA to injured arteries attenuated intimal thickening at day 7, paralleled with reduced intimal VSMC replication, without alteration of VSMC proliferation in the media. In accordance, [3H]-thymidine incorporation assay in primary cultured rat VSMCs revealed an enhanced replication rate(by 61%) upon ADAMTS-7 overexpression and retarded proliferation(by 23%) upon ADAMTS-7 si RNA administration. Our data demonstrates that ADAMTS-7 promotes VSMC proliferation both in vitro and in vivo. ADAMTS-7 may therefore serve as a novel therapeutic target for atherosclerosis and post-angioplasty restenosis. | ZHANG Lu YU Fang WANG Li ZHENG JinGang DU YaoYao HUANG YaQian LIU Bo WANG Xian KONG Wei | 2015 | Science China(Life Sciences)2015,58,7: | 4 |
| 15 | Preparation and Characterization of Cellulose Nanofibril-Waterborne Polyurethane Composite Films显示文摘To improve the performance of polyurethane films,small amounts of cellulose nanofibrils(CNF)were physically blended with a waterborne polyurethane(WPU)emulsion,and then CNF/WPU composite films were prepared by cast-coating and drying.The particle size of the emulsions and the chemical structure,micromorphology,thermal stability,mechanical properties,and water resistance of the composite films were characterized using a Malvern laser particle size analyzer,Fourier transform infrared spectroscopy(FT-IR),scanning electron microscopy(SEM),thermogravimetric analysis(TGA),an electronic strength machine,water contact angle analysis(WCA),and water absorption tests,respectively.The results showed that at a low CNF content of 0.3 wt%,the particle size of the WPU emulsion and chemical structure of the film did not change significantly.In addition,the tensile strength of the composite film increased by up to 108%compared to the neat WPU film,and the thermal stability and water resistance were slightly improved.The addition of CNF greatly enhanced the tensile strength while maintaining the other original properties of the WPU film,which may greatly improve the service life and tear resistance of commercial coatings in the future. | Xinqi Li Jinghuan Chen Jingang Liu Qi Chen | 2023 | Paper And Biomaterials2023,8,1: | 3 |
| 16 | Eco-friendly PVA/Kaolin Clay Coating for Barrier Paper显示文摘The resistance of wood-fiber paper to water, grease, and water vapor is usually attained by immersing the base paper in hydrophobic oil, laminating with a plastic or metal film, or the application of a barrier coating. Oil impregnation and the addition of films may make the paper difficult to recycle or persistent in the environment owing to their strong binding force and nondegradability. Environmental concerns have attracted worldwide attention to eco-friendly barrier coatings. In this study, degradable polyvinyl alcohol(PVA) and kaolin clay pigment were used to prepare coatings that were applied to a base paper. By measuring the barrier properties of the coated paper, including the water absorptiveness(Cobb60 value), Hercules sizing degree, oil resistance(Kit rating), and water vapor transmission rate(WVTR), an optimal coating formulation and process were proposed. To examine the barrier mechanism of the PVA/kaolin clay coating, we characterized the coating microstructures using a scanning electron microscopy(SEM) and a mercury porosimeter. The results showed that the Cobb60 value and water vapor transmission rate of the coated paper decreased by 61.4% and 98.6%, respectively, compared with the base paper, for a pre-coating weight of 0.98 g/m^2 and a top-coating weight of about 3.23 g/m^2. Furthermore, the Hercules sizing degree rose by a factor of 337.2, while the oil resistance(Kit rating) increased from 0 to 12. The optimum drying temperature for a wet coating layer was found to be 170℃, and the optimum weight ratio of PVA to kaolin clay in the coating was determined to be 50∶50. It was assumed that the PVA/kaolin clay coating improved the smoothness of the paper considerably and decreased the pore size by filling the pores on the paper surface and forming an even film, thus enhancing the paper barrier performance. The coated paper also exhibited good repulpability. | YanFen Du JinGang Liu JiaFu Wang YanQun Su HongCai Li BiSong wang RuiJuan Zhang | 2017 | Paper And Biomaterials2017,2,2: | 3 |
| 17 | Progress on Li3VO4 as a Promising Anode Material for Li-ion Batteries显示文摘 | Jun Mo Xiumei Zhang Junjie Liu Jingang Yu Zhian Wang Zaichun Liu Xinhai Yuan Chunjiao Zhou Ruilian Li Xiongwei Wu Yuping Wu | 2017 | Chinese Journal of Chemistry2017,35,12: | 3 |
| 18 | Effects of MFC-modified GCC as Filler on the Opacity of Pulp Handsheets显示文摘Microfibrillated cellulose(MFC)was obtained by mechanical grinding of different pulps.MFC-modified ground calcium carbonate(GCC)was prepared in two different ways,designated MFC-GCC composite filler and MFC-GCC flocs filler.The opacity of pulp handsheets loaded with MFCmodified GCC was measured.The effects of MFC originated from different pulps,pretreatment method,and filler modification on the opacity of handsheets loaded with MFC-modified GCC were discussed.The results show that MFC originated from alkaline peroxide mechanical pulp(APMP)was optimal for improving the opacity of the handsheets and PFI grinding pretreatment for MFC provided a denser structure in the corresponding MFCAPMP-GCC floc filler while enzyme pretreatment was more effective in increasing the opacity of the filled paper.Under the experimental conditions,the opacity of handsheets increased from 81.0%to 82.7%when the unmodified GCC was replaced by an equivalent amount of MFCAPMP-GCC composite filler,while other properties were unchanged. | Yanqun Su Junjie Liu Jingang Liu Ruijuan Zhang Jinghuan Chen Yanfen Du | 2020 | Paper And Biomaterials2020,5,3: | 3 |
| 19 | Cloning and Analysis of Full-Length cDNA of PumNPR1 Gene from Pyrus ussuriensis Maxim显示文摘The purpose of this study is to find a new gene resource for the researches of molecular breeding of Rosaceae plants disease-resistance.Pyrus ussuriensis Maxim is used as a starting material to clone the full-length cDNA of NPR1(nonexpressor of pathogenesis-related genes 1) which is a key regulator in SA(salicylic acid)-mediated systemic acquired resistance(SAR) by homologous cloning and RACE techniques.The length of the cDNA sequence was 1 767 bp,the ORF was 1 761 bp,it coded 586 amino acids,pI=5.58,the relative molecular weight was 65.009 ku,contained 19 kinds of amino acids,and had full BTB/POZ and ANK domains.Compared the homology of NPR1 gene in GenBank database,the homology with Pyrus pyrifolia,Arabidopsis thaliana,Nicotiana tabacum,Lycopersicon esculentum,Oryza sativa,Helianthus annuus were 98%,62%,68%,65%,57%,63%.The homology of functional area were 99%,78%,82%,79%,74%,77%.This NPR1 gene was considered as homologic gene of Pyrus ussuriensis Maxim and named PumNPR1. | CHE Daidi FAN Jinping WANG Jingang XU Ping YANG Tao LIU Shenkui | 2008 | Journal of Northeast Agricultural University(English Edition)2008,15,2: | 2 |
| 20 | Applications of nanogenerators for biomedical engineering and healthcare systems显示文摘The dream of human beings for long living has stimulated the rapid development of biomedical and healthcare equipment.However,conventional biomedical and healthcare devices have shortcomings such as short service life,large equipment size,and high potential safety hazards.Indeed,the power supply for conventional implantable device remains predominantly batteries.The emerging nanogenerators,which harvest micro/nanomechanical energy and thermal energy from human beings and convert into electrical energy,provide an ideal solution for self-powering of biomedical devices.The combination of nanogenerators and biomedicine has been accelerating the development of self-powered biomedical equipment.This article first introduces the operating principle of nanogenerators and then reviews the progress of nanogenerators in biomedical applications,including power supply,smart sensing,and effective treatment.Besides,the microbial disinfection and biodegradation performances of nanogenerators have been updated.Next,the protection devices have been discussed such as face mask with air filtering function together with real-time monitoring of human health from the respiration and heat emission.Besides,the nanogenerator devices have been categorized by the types of mechanical energy from human beings,such as the body movement,tissue and organ activities,energy from chemical reactions,and gravitational potential energy.Eventually,the challenges and future opportunities in the applications of nanogenerators are delivered in the conclusive remarks. | Wanli Wang Jinbo Pang Jie Su Fujiang Li Qiang Li Xiaoxiong Wang Jingang Wang Bergoi Ibarlucea Xiaoyan Liu Yufen Li Weijia Zhou Kai Wang Qingfang Han Lei Liu Ruohan Zang Mark HRümmeli Yang Li Hong Liu Han Hu Gianaurelio Cuniberti | 2022 | InfoMat2022,4,2: | 2 |