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| 1 | Clinical characteristics of human infection with a novel avian-origin influenza A(H10N8) virus显示文摘 | Zhang Wei Wan Jianguo Qian Kejian Liu Xiaoqing Xiao Zuke Sun Jian Zeng Zhenguo Wang Qi Zhang Jinxiang Jiang Guanghui Nie Cheng Jiang Rong Ding Chengzhi Li Ran Horby Peter Gao Zhancheng | 2014 | Chinese Medical Journal2014,,18: | 12 |
| 2 | Surface engineering at the interface of core/shell nanoparticles promotes hydrogen peroxide generation显示文摘Hydrogen peroxide(H_2O_2), an environmentally friendly oxidant, has already been widely used in many chemical synthesis and industrials as an alternative to replace traditional oxidants including chlorinated oxidizers and strong acids. However, the conventional synthesis method confronts intense energy cost,tedious separation procedures and high cost, which is not competitive with traditional oxidants. Although direct H_2O_2 synthesis from H_2 and O_2 is a green and atomically economic reaction, satisfactory activity and desirable selectivity still remain formidable challenges. Herein, for the first time, a class of Pd@NiO-x nanoparticles(NPs)(x = 1, 2, 3 and 4) with a unique core@shell interface structure has been created to achieve high activity, selectivity and stability for the direct H_2O_2 synthesis. A precise thermal annealing on Pd@Ni-x NPs revealed that the resulting Pd@Ni O-x NPs exhibited the volcano-like activity toward direct H_2O_2 synthesis as a function of annealing temperature and time. By tuning the composition of Pd@Ni O-x NPs and the reaction condition, the efficiency of H_2O-2 synthesis could be well optimized with 5 wt%Pd@NiO-3/TiO_2 exhibiting the highest productivity(89 mol/(kg_(cat) h)) and selectivity(91%) to H_2O_2 as well as excellent stability, making it one of the best catalysts for direct H_2O_2 synthesis reported to date. | Yonggang Feng Qi Shao Bolong Huang Junbo Zhang Xiaoqing Huang | 2018 | National Science Review2018,5,6: | 7 |
| 3 | A Resource for Inactivation of MicroRNAs Using Short Tandem Target Mimic Technology in Model and Crop Plants显示文摘microRNAs (miRNAs)are endogenous small non-coding RNAs that bind to mRNAs and target them for cleavage and/or translational repression,leading to gene silencing.We previously developed short tandem target mimic (STTM)technology to deactivate endogenous miRNAs in Arabidopsis.Here,we created hundreds of STTMs that target both conserved and species-specific miRNAs in Arabidopsis,tomato,rice,and maize,providing a resource for the functional interrogation of miRNAs.We not only revealed the functions of several miRNAs in plant development,but also demonstrated that tissue-specific inactivation of a few miRNAs in rice leads to an increase in grain size without adversely affecting overall plant growth and development.RNA-seq and small RNAseq analyses of STTM156/157 and STTM165/166 transgenic plants revealed the roles of these miRNAs in plant hormone biosynthesis and activation,secondary metabolism,and ion-channel activity-associated electrophysiology,demonstrating that STTM technology is an effective approach for studying miRNA functions.To facilitate the study and application of STTM transgenic plants and to provide a useful platform for storing and sharing of information about miRNA-regulated gene networks,we have established an online Genome Browser (http://gffzzc750bc0108fa4044sowppo5n9kccw6qkp.ffgz.tsg.suse.edu.cn/designindex2.php) to display the transcriptomic and miRNAomic changes in STTMinduced miRNA knockdown plants. | Ting Peng Mengmeng Qiao Haiping Liu Sachin Teotia Zhanhui Zhang Yafan Zhao Bobo Wang Dongjie Zhao Lina Shi Cui Zhang Brandon Le Kestrel Rogers Chathura Gunasekara Haitang Duan Yiyou Gu Lei Tian Jinfu Nie Jian Qi Fanrong Meng Lan Huang Qinghui Chen Zhenlin Wang Jinshan Tang Xiaoqing Tang Ting Lan Xuemei Chen Hairong Wei Quanzhi Zhao Guiliang Tang | 2018 | Molecular Plant2018,11,11: | 7 |
| 4 | Preparation of monodisperse, superparamagnetic, luminescent, and multifunctional PGMA microspheres with amino-groups显示文摘Micron-sized, monodisperse, superparamagnetic, luminescent composite poly(glycidyl methacrylate) (PGMA) microspheres with functional amino-groups were successfully synthesized in this study. The process of preparation was as follows: preparation of monodisperse poly(glycidyl methacrylate) mi- crospheres by dispersion polymerization method; modification of poly(glycidyl methacrylate) micro- spheres with ethylene diamine to form amino-groups; impregnation of iron ions (Fe2+ and Fe3+) inside the microspheres and subsequently precipitating them with ammonium hydroxide to form magnetite (Fe3O4) nanoparticles within the polymer microspheres; infusion of CdSe/CdS core-shell quantum dots (QDs) into magnetic polymer microspheres. Scanning electron microscopy (SEM) was used to char- acterize surface morphology and size distribution of composite microspheres. The average size of mi- crospheres was 1.42 μm with a size variation of 3.8%. The composite microspheres were bright enough and easily observed using a conventional fluorescence microscope. The composite microspheres were easily separated from solution by magnetic decantation using a permanent magnet. The new multi- functional composite microspheres are promising to be used in a variety of bioanalytical assays in- volving luminescence detection and magnetic separation. | WANG WeiCai ZHANG Qi ZHANG BingBo LI DeNa DONG XiaoQing ZHANG Lei CHANG Jin | 2008 | Chinese Science Bulletin2008,53,8: | 5 |
| 5 | Cryo-self-assembled silk fibroin sponge as a biodegradable platform for enzyme-responsive delivery of exosomes显示文摘Although advances in protein assembly preparation have provided a new platform for drug delivery during tissue engineering,achieving long-term controlled exosome delivery remains a significant challenge.Diffusion-dominated exosome release using protein hydrogels results in burst release of exosomes.Here,a fibroin-based cryo-sponge was developed to provide controlled exosome release.Fibroin chains can self-assemble into silk I structures under ice-cold conditions when annealed above the glass transition temperature.Exosome release is enzyme-responsive,with rates primarily determined by enzymatic degradation of the scaffolds.In vivo experiments have demonstrated that exosomes remain in undigested sponge material for two months,superior to their retention in fibrin glue,a commonly used biomaterial in clinical practice.Fibroin cryo-sponges were implanted subcutaneously in nude mice.The exosome-containing sponge group exhibited better neovascularization and tissue ingrowth effects,demonstrating the efficacy of this exosome-encapsulating strategy by realizing sustained release and maintaining exosome bioactivity.These silk fibroin cryo-sponges containing exosomes provide a new platform for future studies of exosome therapy. | Muyang Sun Qi Li Huilei Yu Jin Cheng Nier Wu Weili Shi Fengyuan Zhao Zhenxing Shao Qingyang Meng Haifeng Chen Xiaoqing Hu Yingfang Ao | 2022 | Bioactive Materials2022,7,2: | 4 |
| 6 | Partially hydroxylated ultrathin iridium nanosheets as efficient electrocatalysts for water splitting显示文摘Ultrathin two-dimensional(2D)materials have attracted considerable attention for their unique physicochemical properties and promising applications;however,preparation of freestanding ultrathin 2D noble metal remains a significant challenge.Here,for the first time,we report use of a wet-chemical method to synthesize partially hydroxylated ultrathin Ir nanosheets(ir-NSs)of only five to six atomic layers*thickness.Detailed analysis indicates that the growth confinement effect of carbon monoxide and the partially hydroxylated surface play a critical role in formation of the ultrathin structure.The ultrathin Ir-NSs exhib让excellent performance for both the hydrogen evolution reaction and oxygen evolution reaction in a wide pH range,outperforming the state-of the-art Pt/C and IrO2,respectively.Density-functional theory calculations reveal that the partial hydroxylation not only enhances the surface electron transfer between Ir-sites and intermediate O-species,but also guarantees efficient irdtial activation ofbond cleavage of H-O-H for first-step H2O splitting.This;ultimately,breaks through barriers to full water splitting,with efficient electron transfer essentially maintained. | Zifang Cheng Bolong Huang Yecan Pi Leigang Li Qi Shao Xiaoqing Huang | 2020 | National Science Review2020,7,8: | 4 |
| 7 | An improved surface-plasmonic nanobeam cavity for higher Q and smaller V显示文摘We demonstrate a high-Q hybrid surface-plasmon-polariton-photonic crystal(SP3C) nanobeam cavity.The proposed cavities are analyzed numerically using the three-dimensional finite difference time domain(3D-FDTD) method.The results show that a Q-factor of 2076 and a modal volume V of 0.16(/2n) 3 can be achieved in a 50 nm silica-gap hybrid SP3C nanobeam cavity when it operates at telecommunications wavelengths and at room temperature.V can be further reduced to 0.02(/2n) 3 when the silica thickness decreases to 10 nm,which leads to a Q/V ratio that is 11 times that of the corresponding plasmonic-photonic nanobeam cavity(without silica).The ultrahigh Q/V ratio originates from the low-loss nature and deep sub-wavelength confinement of the hybrid plasmonic waveguide,as well as the mode gap effect used to reduce the radiation loss.The proposed structure is fully compatible with semiconductor fabrication techniques and could lead to a wide range of applications. | YU Ping QI Biao XU Chao HU Ting JIANG XiaoQing WANG MingHua YANG JianYi | 2012 | Chinese Science Bulletin2012,57,25: | 4 |
| 8 | Research of high speed optical switch based on compound semiconductor显示文摘High-speed optical switch and its array are the crucial components of all-optical switching system.This paper presents the analytical model of a total-internal-reflection(TIR) optical switch.By employing the carrier injection effect in GaAs and the GaAs/AlGaAs double heterojunction structure,the X-junction TIR switch and the Mach-Zehnder interference(MZI) switch are demonstrated at 1.55 μm.The measured results show that the extinction ratio of both switches exceeds 20 dB.The switching speed reaches the scale of 10 ns. | WANG MingHua QI Wei YU Hui JIANG XiaoQing YANG JianYi | 2009 | Chinese Science Bulletin2009,54,20: | 4 |
| 9 | Distinct contribution of PD-L1 suppression by spatial expression of PD-L1 on tumor and non-tumor cells显示文摘Programmed cell death receptor 1(PD-1)and its ligand,PD-L1,are important immune checkpoint proteins.Although antibodies that block PD-1/PD-L1 have shown promising clinical efficacy in a subset of cancer patients,the detailed cellular and molecular mechanisms behind anti-PD-1 and anti-PD-L1 immunotherapy are not well defined.Specifically,the way in which PD-L1 contributes to immune suppression on tumor and non-tumor cells remains controversial.By selectively blocking PD-L1 on either tumor or non-tumor cells,we demonstrated that PD-L1 from both sources suppressed the anti-tumor T-cell response.Blocking PD-L1 on either tumor cells or non-tumor cells inhibited tumor growth and enhanced immune cell infiltration,as well as the tumor-specific T-cell response.Further,simultaneously blocking tumor-and non-tumor-derived PD-L1 maximized anti-tumor T-cell responses and demonstrated synergy.In addition,the relative contribution of PD-L1 on tumor and non-tumor cells to immune suppression depended on the PD-L1 expression level.Lastly,we found that the F4/80 receptor was involved in the anti-tumor effect of PD-L1 blockade.Taken together,our data indicate that PD-L1 on both tumor and non-tumor cells is critical for T-cell inhibition,which provides new directions for the optimization of PD-L1-blocking antibodies and the development of clinical biomarker strategies. | Xiaoqing Zhang Chen Cheng Jiyan Hou Xinyue Qi Xin Wang Ping Han Xuanming Yang | 2019 | Cellular & Molecular Immunology2019,16,4: | 3 |
| 10 | Multiple structural defects in ultrathin NiFe-LDH nanosheets synergistically and remarkably boost water oxidation reaction显示文摘Modifying electrocatalysts nanostructures and tuning their electronic properties through defects-oriented synthetic strategies are:essential to improve the oxygen evolution reaction(OER)performance of electrocatalysts.Current synthetic strategies about.electrocatalysts mainly target the single or double structural defects,while the researches about the synergistic effect of multiple'structural defects are rare.In this work,the ultrathin NiFe layered double hydroxide nanosheets with a holey structure,oxygen;vacancies and Ni^(3+)defects on nickel foam(NiFe-LDH-NSs/NF)are prepared by employing a simple and green H202-assisted etching 1 method.The synergistic effect ofthe above three defects leads to the exposure of.more active sites and significant improvement of:the intrinsic activity.The optimized catalyst exhibits an excellent OER performance with an extraordinarily low overpotential of 170 mV;at to mA·cm^(-2) and a small Tafel slope of 39.3 mV·dec^(-1) in 1 M KOH solution.Density functional theory calculations reveal this OER;performance arises from pseudo re-oxidized metal-stable Ni^(3+)near oxygen vacancies(O_(vac)),which suppresses 3d-e_(g) of Ni-site and!elevates d-band center towards the competitively low electron-transferbarrier.This work provides a new insight to fabricate advanced electrocatalysts for renewable energy conversion technologies. | Zhongyin Zhao Qi Shao Jiangyan Xue Bolong Huang Zheng Niu Hongwei Gu Xiaoqing Huang Jianping Lang | 2022 | Nano Research2022,15,1: | 3 |
| 11 | Numerical Study on the Bifurcation of the North Equatorial Current显示文摘A 1.5-layer reduced-gravity model forced by wind stress is used to study the bifurcations of the North Equatorial Current(NEC).The authors found that after removing the Ekman drift,the modelled circulations can serve well as a proxy of the SODA circulations on the σθ=25.0 kg m~-3 potential density surface based on available long-term reanalysis wind stress data.The modelled results show that the location of the western boundary bifurcation of the NEC depends on both zonal averaged and local zero wind stress curl latitude.The effects of the anomalous wind stress curl added in different areas are also investigated and it is found that they can change the strength of the Mindanao Eddy(ME),and then influence the interior pathway. | LIU Yulong WANG Qi SONG Jun ZHU Xiande GONG Xiaoqing WU Fang | 2011 | Journal of Ocean University of China2011,10,4: | 3 |
| 12 | How Microbes Shape Their Communities? A Microbial Community Model Based on Functional Genes显示文摘Exploring the mechanisms of maintaining microbial community structure is important to understand biofilm development or microbiota dysbiosis. In this paper, we propose a functional gene-based composition prediction(FCP) model to predict the population structure composition within a microbial community. The model predicts the community composition well in both a low-complexity community as acid mine drainage(AMD) microbiota, and a complex community as human gut microbiota. Furthermore, we define community structure shaping(CSS) genes as functional genes crucial for shaping the microbial community. We have identified CSS genes in AMD and human gut microbiota samples with FCP model and find that CSS genes change with the conditions. Compared to essential genes for microbes, CSS genes are significantly enriched in the genes involved in mobile genetic elements, cell motility, and defense mechanisms, indicating that the functions of CSS genes are focused on communication and strategies in response to the environment factors. We further find that it is the minority, rather than the majority, which contributes to maintaining community structure. Compared to health control samples, we find that some functional genes associated with metabolism of amino acids, nucleotides, and lipopolysaccharide are more likely to be CSS genes in the disease group. CSS genes may help us to understand critical cellular processes and be useful in seeking addable gene circuitries to maintain artificial self-sustainable communities. Our study suggests that functional genes are important to the assembly of microbial communities. | Xiaoqing Jiang Xin Li Longshu Yang Chunhong Liu Qi Wang Weilai Chi Huaiqiu Zhu | 2019 | Genomics, Proteomics & Bioinformatics2019,17,1: | 3 |
| 13 | Interaction Time Study of the Dissipative Process in the Reaction ^(19)F+^(45)Sc显示文摘Excitation functions have been measured for the dissipative products of 4≤Z≤12 in ^(19)F+^(45)Sc reaction from 102 to ^(108)MeV by a step of 300keV at θl=42°.The energy coherence widths have been extracted and the dinuclear system lifetimes of the order of 10^(-21 ) s have been deduced by analysing the cross section Auctuations. | WANG Qi LI Songlin LU Jun XU Hushan YIN Xu FAN Enjie GUO Zhongyan ZHU Yongtai XIE Yuanxiang LI Zhichang LU Xiuqin HU Xiaoqing | 1993 | Chinese Physics Letters1993,10,11: | 3 |
| 14 | Enhancing hydrogen evolution on the basal plane of transition metal dichacolgenide van der Waals heterostructures显示文摘Recent years have seen a surge in the use of low-dimensional transition metal dichacolgenides,such as MoS_(2),as catalysts for the electrochemical hydrogen evolution reaction.In particular,sulfur vacancies in MoS_(2)can activate the inert basal plane,but that requires an unrealistically high defect concentration(~9%)to achieve optimal activity.In this work,we demonstrate by firstprinciples calculations that assembling van der Waals heterostructures can enhance the catalytic activity of MoS_(2)with low concentrations of sulfur vacancies.We integrate MoS_(2)with various two-dimensional nanostructures,including graphene,h-BN,phosphorene,transition metal dichacolgenides,MXenes,and their derivatives,aiming to fine-tune the free energy of atomic hydrogen adsorption.Remarkably,an optimal free energy can be achieved for a low sulfur vacancy concentration of~2.5%in the MoS_(2)/MXene-OH heterostructure,as well as high porosity and tunability.These results demonstrate the potential of combining two-dimensional van der Waals assembly with defect engineering for efficient hydrogen production. | Faling Ling Wei Kang Huirong Jing Wen Zeng Yankun Chen Xiaoqing Liu Yixin Zhang Lin Qi Liang Fang Miao Zhou | 2019 | npj Computational Materials2019,,1: | 2 |
| 15 | Atomically isolated Pd sites within Pd-S nanocrystals enable trifunctional catalysis for direct,electrocatalytic and photocatalytic syntheses of H_(2)O_(2)显示文摘Although high-efficiency production of hydrogen peroxide(H_(2)O_(2))can be realized separately by means of direct,electrochemical,and photocatalytic synthesis,developing versatile catalysts is particularly challenging yet desirable.Herein,for the first time we reported that palladium-sulphur nanocrystals(Pd-S NCs)can be adopted as robust and universal catalysts,which can realize the efficient O_(2) conversion by three methods.As a result,Pd-S NCs exhibit an excellent selectivity(89.5%)to H_(2)O_(2)with high productivity(133.6 mol·kgcat^(−1)·h^(−1))in the direct synthesis,along with the significantly enhanced H_(2)O_(2)production activity and stability via electrocatalytic and photocatalytic syntheses.It is demonstrated that the isolated Pd sites can enhance the adsorption of O_(2) and inhibit its O–O bond dissociation,improving H_(2)O_(2)selectivity and reducing H_(2)O_(2)degradation.Further study confirms that the difference in surface atom composition and arrangement is the key factor for different ORR mechanisms on Pd NCs and Pd-S NCs. | Tang Yang Chengyong Yang Jiabo Le Zhiyong Yu Lingzheng Bu Leigang Li Shuxing Bai Qi Shao Zhiwei Hu Chih-Wen Pao Jun Cheng Yonggang Feng Xiaoqing Huang | 2022 | Nano Research2022,15,3: | 2 |
| 16 | Analytical optimization on GNSS buoy array for underwater positioning显示文摘Global navigation satellite system(GNSS)/acoustic positioning precision is determined by the positioning geometry and the ranging precision;thus optimizing GNSS buoys array is meaningful to improve the positioning accuracy and reliability.An analytical method is proposed for optimizing the GNSS buoys array with regard to the cutoff angle constraints for underwater acoustic observations.For the practical limitation of coplanarity of GNSS buoys and the cutoff angle,an algorithm is proposed to analytically minimize the position dilution of precision(PDOP).The proposed method is validated to give complete solutions of PDOP minimization with five GNSS buoys.At last,in order to search a best configuration among the PDOP solution set,we propose a search algorithm to get the solution with the smallest geometric dilution of precision(GDOP).It indicates that within a given region,the GDOP minimization at the center of a region is equivalent to the PDOP mean minimization over the region.The relation between the positioning accuracy and the positioning geometry with five known points is illustrated in an experiment performed in South China Sea. | Ke Qi Guoqing Qu Shuqiang Xue Tianhe Xu Xiaoqing Su Yixu Liu Jun Wan | 2019 | Acta Oceanologica Sinica2019,38,7: | 2 |
| 17 | Molecular characterisation of soybean polysaccharides:an approach by size exclusion chromatography,dynamic and static light scattering methods显示文摘 | WANG Qi HUANG Xiaoqing NAKAMURA A | 2005 | Carbohydrate Research2005,340,17: | 1 |
| 18 | Tackling COVID-19:Insights from the Qinghai Province plague prevention and control(PPC)model显示文摘Plague,caused by Yersinia pestis,is a natural focus infectious disease.In China,plague is classified as category A,with the highest risk and hazard among the infectious diseases.Qinghai used to be considered as one of the most serious areas of plague in China.In recent years,thank to the measures in eight aspects summarized as the“Qinghai model”which were adopted to prevent and control the human plague in Qinghai,Qinghai has not experienced any plague case reported for eight years.In early 2020,coronavirus disease 2019(COVID-19)outbroke in China.The Qinghai model on plague was employed to deal with the COVID-19 emergency in Qinghai Province.The Qinghai Center for Disease Control and Prevention(Qinghai CDC)and hospitals,along with the departments of public security,animal husbandry and other departments,quickly tracked and treated the patients with severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)and started surveillance programs on close contacts timely.At present,the cure rate of patients has reached 100%,and close contacts have been effectively quarantined and tested to avoid the spread of COVID-19.The findings from the study suggest that the prevention and control measures undertaken in Qinghai Province might be effective in dealing with the category A infectious diseases such as COVID-19 and other diseases. | Haisheng Wu Qingwen Zhang Hailian Wu Fuzhang Tian Baizhong Cui Zhizhen Qi Xiaoqing Xu Xuefei Zhang HuWang | 2020 | Biosafety and Health2020,2,4: | 1 |
| 19 | Exposed facet-controlled N_(2) electroreduction on distinct Pt3Fe nanostructures of nanocubes, nanorods and nanowires显示文摘Understanding the correlation between exposed surfaces and performances of controlled nanocatalysts can aid effective strategies to enhance electrocatalysis,but this is as yet unexplored for the nitrogen reduction reaction(NRR).Here,we first report controlled synthesis of well-defined Pt3Fe nanocrystals with tunable morphologies(nanocube,nanorod and nanowire)as ideal model electrocatalysts for investigating the NRR on different exposed facets.The detailed electrocatalytic studies reveal that the Pt3Fe nanocrystals exhibit shape-dependent NRR electrocatalysis.The optimized Pt3Fe nanowires bounded with high-index facets exhibit excellent selectivity(no N2H4 is detected),high activity with NH3 yield of 18.3μg h^-1mg^-1cat(0.52μg h^-1cm^-2ECSA;ECSA:electrochemical active surface area)and Faraday efficiency of 7.3%at-0.05 V versus reversible hydrogen electrode,outperforming the{200}facet-enclosed Pt3Fe nanocubes and{111}facet-enclosed Pt3Fe nanorods.They also show good stability with negligible activity change after five cycles.Density functional theory calculations reveal that,with high-indexed facet engineering,the Fe-3d band is an efficient d-d coupling correlation center for boosting the Pt 5d-electronic exchange and transfer activities towards the NRR. | Wu Tong Bolong Huang Pengtang Wang Qi Shao Xiaoqing Huang | 2021 | National Science Review2021,8,1: | 1 |
| 20 | One-dimensional iridium-based nanowires for efficient water electrooxidation and beyond显示文摘The sluggish reaction kinetics of oxygen evolution reaction(OER)has largely lowered the efficiency of electrochemical water splitting.Ir represents one of the state-of-the-art electrocatalysts for promoting OER especially in acidic electrolytes.However,it remains a formidable challenge to synthesize high-quality one-dimensional(1D)Ir-based nanostructures for improved electrocatalytic performance.Herein,a template-assisted synthesis method is reported wherein 1D porous Ir-Te nanowires(Ir-Te NWs)are synthesized with Te NWs serving as the template.The Ir-Te NWs exhibit highly enhanced OER performance compared to commercial IrO_(2) and Ir/C.In detail,the overpotentials to reach 10 mA cm^(-2) are 248 and 284 mV in 1 M KOH and 0.5 M H2S04,respectively,much lower than those of commercial catalysts.The Ir-Te NWs also show smaller Tafel slopes than commercial IrO_(2) and Ir/C,signifying faster reaction kinetics.Besides,much more durable OER activity can be maintained for Ir-Te NWs with negligible decay during 25 and 20 h stability tests in 1 M KOH and 0.5 M H_(2)SO_(4),respectively.Further analysis indicates that the significantly improved OER performance of Ir-Te NWs could be ascribed to the larger electrochemical surface area and smaller electrical resistance.More significantly,the templated synthesis of Ir-Te NWs can be facilely extended to the fabrication of other metal-Te NWs including Ru-Te,Rh-Te and Pt-Te NWs.The design and synthesis of 1D metal-based NWs in this work provide important inspiration for the synthesis of diversified 1D metallic nanostructures with distinctly enhanced catalytic performance and beyond. | Leigang Li Pengtang Wang Zifang Cheng Qi Shao Xiaoqing Huang | 2022 | Nano Research2022,15,2: | 1 |