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| 1 | Study on grid adaptability testing methodology for wind turbines显示文摘The use of wind power has grown rapidly in recent years.Wind power is a clean source of energy,but can have negative impacts on the distribution grid.The influence of large-scale wind power integration on the safe and stable operation of a power system cannot be ignored.It is necessary and urgent to achieve grid adaptability for wind turbines in China.Using a 35 kV/6 MVA grid simulator,the performance of a grid is investigated by simulation.Typical grid disturbances such as voltage deviation,frequency fluctuation,voltage unbalance,and distortion can be simulated.A grid adaptability testing methodology was developed and applied to a doubly fed wind turbine with a focus on analyzing real test data to ascertain its three-phase voltage unbalance adaptability,which was successfully demonstrated.The methodology can also be used to guide other grid adaptability tests. | Shaolin LI Shiyao QIN Ruiming WANG Qing LI Chen CHEN | 2013 | Journal of Modern Power Systems and Clean Energy2013,1,1: | 4 |
| 2 | Phase boundary engineering of metal-organic-framework-derived carbonaceous nickel selenides for sodium-ion batteries显示文摘Nano Research volume 13,pages2289–2298(2020)Cite this article 347 Accesses 1 Altmetric Metrics details Abstract Sodium-ion batteries(SIBs)are promising power sources due to the low cost and abundance of battery-grade sodium resources,while practical SIBs suffer from intrinsically sluggish diffusion kinetics and severe volume changes of electrode materials.Metal-organic framework(MOFs)derived carbonaceous metal compound offer promising applications in electrode materials due to their tailorable composition,nanostructure,chemical and physical properties.Here,we fabricated hierarchical MOF-derived carbonaceous nickel selenides with bi-phase composition for enhanced sodium storage capability.As MOF formation time increases,the pyrolyzed and selenized products gradually transform from a single-phase Ni3Se4 into bi-phase NiSex then single-phase NiSe2,with concomitant morphological evolution from solid spheres into hierarchical urchin-like yolk-shell structures.As SIBs anodes,bi-phase NiSex@C/CNT-10h(10 h of hydrothermal synthesis time)exhibits a high specific capacity of 387.1 mAh/g at 0.1 A/g,long cycling stability of 306.3 mAh/g at a moderately high current density of 1 A/g after 2,000 cycles.Computational simulation further proves the lattice mismatch at the phase boundary facilitates more interstitial space for sodium storage.Our understanding of the phase boundary engineering of transformed MOFs and their morphological evolution is conducive to fabricate novel composites/hybrids for applications in batteries,catalysis,sensors,and environmental remediation. | Shiyao Lu Hu Wu Jingwei Hou Limin Liu Jiao Li Chris J.Harris Cheng-Yen Lao Yuzheng Guo Kai Xi Shujiang Ding Guoxin Gao Anthony K.Cheetham R.Vasant Kumar | 2020 | Nano Research2020,13,8: | 4 |
| 3 | Macrophage membrane-coated nanocarriers Co-Modified by RVG29 and TPP improve brain neuronal mitochondria-targeting and therapeutic efficacy in Alzheimer's disease mice显示文摘Neuronal mitochondrial dysfunction caused by excessive reactive oxygen species(ROS)is an early event of sporadic Alzheimer's disease(AD),and considered to be a key pathologic factor in the progression of AD.The targeted delivery of the antioxidants to mitochondria of injured neurons in brain is a promising therapeutic strategy for AD.A safe and effective drug delivery system(DDS)which is able to cross the blood-brain barrier(BBB)and target neuronal mitochondria is necessary.Recently,bioactive materials-based DDS has been widely investigated for the treatment of AD.Herein,we developed macrophage(MA)membrane-coated solid lipid nanoparticles(SLNs)by attaching rabies virus glycoprotein(RVG29)and triphenylphosphine cation(TPP)molecules to the surface of MA membrane(RVG/TPP-MASLNs)for functional antioxidant delivery to neuronal mitochondria.According to the results,MA membranes camouflaged the SLNs from being eliminated by RESrich organs by inheriting the immunological characteristics of macrophages.The unique properties of the DDS after decoration with RVG29 on the surface was demonstrated by the ability to cross the BBB and the selective targeting to neurons.After entering the neurons in CNS,TPP further lead the DDS to mitochondria driven by electric charge.The Genistein(GS)-encapsulated DDS(RVG/TPP-MASLNs-GS)exhibited the most favorable effects on reliveing AD symptoms in vitro and in vivo by the synergies gained from the combination of MA membranes,RVG29 and TPP.These results demonstrated a promising therapeutic candidate for delaying the progression of AD via neuronal mitochondria-targeted delivery by the designed biomimetic nanosystems. | Yang Han Chunhong Gao Hao Wang Jiejie Sun Meng Liang Ye Feng Qianqian Liu Shiyao Fu Lin Cui Chunsheng Gao Yi Li Yang Yang Baoshan Sun | 2021 | Bioactive Materials2021,6,2: | 4 |
| 4 | Light-weight refractory high-entropy alloys: A comprehensive review显示文摘In recent years,high-entropy alloys(HEAs)have become a research hotspot in materials community,and great progress has been made in exploring various high-performance HEAs.As a special class,the light-weight refractory high-entropy alloys(RHEAs)own both excellent high-temperature comprehensive properties and low density and have accordingly attracted more and more attention.In this paper,we presented a comprehensive review of the recent progress and status in light-weight RHEAs.Based on an exhausting search of the literature reports,one strategy in terms of phase numbers after preparation was first proposed to classify the light-weight RHEAs into three categories.Then,the status on the fundamental thermodynamic and thermophysical data/databases,computational approaches for alloy designing,and preparation/fabrication techniques of light-weight RHEAs was introduced one after another.After that,the progress on mechanical properties and oxidation/corrosion/wear behaviors of light-weight RHEAs at room and high temperatures was summarized.Finally,the conclusions of this review were drawn.By pointing out the shortcomings of the current research,the follow-up development directions in the field of light-weight RHEAs were also given. | Zechun Wang Shiyao Chen Shenglan Yang Qun Luo Yancheng Jin Wei Xie Lijun Zhang Qian Li | 2023 | Journal of Materials Science & Technology2023,,20: | 3 |
| 5 | Identification, through transcriptome analysis, of transcription factors that regulate anthocyanin biosynthesis in different parts of red-fleshed apple 'May' fruit显示文摘Anthocyanins, a class of flavonoid compounds that provide pigmentation to plant organs, are beneficial components of the human diet and there is an interest in understanding the regulation of their formation in crop plants. The apple cultivar ‘May’ represents an excellent model for the study of anthocyanin metabolism due to the spatial color pattern of its flesh, which transitions sequentially from red to white to red again,from the outside to the inside of the apple fruit. To screen the transcription factors involved in the anthocyanin pathway, transcriptomes from differently colored sections of ‘May’ fruits were analyzed by RNA sequencing. Kyoto Encyclopedia of Genes and Genomes(KEGG) database was used to analyse the gene expression data. The results suggested differentially expressed genes(DEGs) that are related to phytohormones are involved in regulating anthocyanin biosynthesis. K-means clustering analysis revealed 167 common DEGs between different sections of fruit with the same expression pattern as candidates for regulating anthocyanin synthesis. Further analysis showed that nine of the 167 DEGs were annotated as transcription factors and quantitative real time PCR(qRT-PCR) confirmed that their expression was obviously higher in red regions of the fruit, consistent with their roles as hub genes that regulate anthocyanin synthesis. This study provides valuable results for future studies of anthocyanin synthesis in apple fruit. | Hua Li Shiyao Duan Weilei Sun Sifan Wang Jie Zhang Tingting Song Ji Tian Yuncong Yao | 2022 | Horticultural Plant Journal2022,8,1: | 2 |
| 6 | Association of assisted reproductive technology, germline de novo mutations and congenital heart defects in a prospective birth cohort study显示文摘Emerging evidence suggests that children conceived through assisted reproductive technology(ART)have a higher risk of congenital heart defects(CHDs)even when there is no family history.De novo mutation(DNM)is a well-known cause of sporadic congenital diseases;however,whether ART procedures increase the number of germline DNM(gDNM)has not yet been well studied.Here,we performed whole-genome sequencing of 1137 individuals from 160 families conceived through ART and 205 families conceived spontaneously.Children conceived via ART carried 4.59 more gDNMs than children conceived spontaneously,including 332 paternal and 1.26 maternal DNMs,after correcting for parental age at conception,cigarette smoking,alcohol drinking,and exercise behaviors.Paternal DNMs in offspring conceived via ART are characterized by C>T substitutions at CpG sites,which potentially affect protein-coding genes and are significantly associated with the increased risk of CHD.In addition,the accumulation of non-coding functional mutations was independently associated with CHD and 87.9% of the mutations were originated from the father.Among ART offspring,infertility of the father was associated with elevated paternal DNMs;usage of both recombinant and urinary follicle-stimulating hormone and high-dosage human chorionic gonadotropin trigger was associated with an increase of maternal DNMs.In sum,the increased gDNMs in offspring conceived by ART were primarily originated from fathers,indicating that ART itself may not be a major reason for the accumulation of gDNMs.Our findings emphasize the importance of evaluating the germline status of the fathers in families with the use of ART. | Cheng Wang Hong Lv Xiufeng Ling Hong Li Feiyang Diao Juncheng Dai Jiangbo Du Ting Chen Qi Xi Yang Zhao Kun Zhou Bo Xu Xiumei Han Xiaoyu Liu Meijuan Peng Congcong Chen Shiyao Tao Lei Huang Cong Liu Mingyang Wen Yangqian Jiang Tao Jiang Chuncheng Lu Wei Wu Di Wu Minjian Chen Yuan Lin Xuejiang Guo Ran Huo Jiayin Liu Hongxia Ma Guangfu Jin Yankai Xia Jiahao Sha Hongbing Shen Zhibin Hu | 2021 | Cell Research2021,31,8: | 2 |
| 7 | Diabolical points in coupled active cavities with quantum emitters显示文摘In single microdisks,embedded active emitters intrinsically affect the cavity modes of the microdisks,resulting in trivial symmetric backscattering and low controllability.Here we demonstrate macroscopic control of the backscattering direction by optimizing the cavity size.The signature of the positive and negative backscattering directions in each single microdisk is confirmed with two strongly coupled microdisks.Furthermore,diabolical points are achieved at the resonance of the two microdisks,which agrees well with theoretical calculations considering the backscattering directions.Diabolical points in active optical structures pave the way for an implementation of quantum information processing with geometric phase in quantum photonic networks. | Jingnan Yang Chenjiang Qian Xin Xie Kai Peng Shiyao Wu Feilong Song Sibai Sun Jianchen Dang Yang Yu Shushu Shi Jiongji He Matthew JSteer Iain GThayne Bei-Bei Li Fang Bo Yun-Feng Xiao Zhanchun Zuo Kuijuan Jin Changzhi Gu Xiulai Xu | 2020 | Light(Science & Applications)2020,9,1: | 2 |
| 8 | Study ongrid adaptability testing methodology for wind tuibines显示文摘 | Li Shaolin Qin Shiyao Wang Ruining | 2013 | Journal of Modern Power System and Clean Energy2013,1,1: | 1 |
| 9 | The development of low-carbon towns in China: concepts and practices 显示文摘 | LI Zheng CHANG Shiyao MA Linwei | 2012 | Energy2012,47,1: | 1 |
| 10 | Synthesis and characterization of three-arm poly (ε-caprolactone) based poly ( ester-ure thanes) with shape-memory effect at body temperature显示文摘 | Xue Liang Dai Shiyao Li Zhi | 2009 | Macromolecules2009,42,: | 1 |
| 11 | Mechanical anisotropy and deep drawing be- haviors of AZ31 magnesium alloy sheets produced by unidirectional and cross rolling显示文摘 | TANGA Weiqin HUANGB Shiyao LI Dayong PENG Yinghong | 2015 | Journal of Materials Processing Technology2015,215,2015: | 1 |
| 12 | Ubiquitylation of Autophagy Receptor Optineurin by HACE1 Activates Selective Autophagy for Tumor Suppression显示文摘 | Zhengzhao Liu Peng Chen Hong Gao Yu Gu Jiao Yang Hong Peng Xingxing Xu Haifeng Wang Meiqiang Yang Xiaoying Liu Libin Fan Shiyao Chen Jian Zhou Yihong Sun Kangchen Ruan Shuqun Cheng Masaaki Komatsu Eileen White Lin Li Hongbin Ji Daniel Finley Ronggui Hu | 2014 | Cancer Cell2014,,: | 1 |
| 13 | Robust normal estimation for point clouds with sharp features显示文摘 | Bao Li Ruwen Schnabel Reinhard Klein Zhiquan Cheng Gang Dang Shiyao Jin | 2010 | Computers & Graphics2010,,2: | 1 |
| 14 | Effect models of Nitrogen, phosphorus and potassium fertilizer formulation in banana显示文摘 | Kuang Shizil Tian Shiyao Li Chunyu | 2010 | Agricuhura Science & Technology2010,11,910: | 1 |
| 15 | Ionic liquids to extract valuable components from direct coal liquefaction residues显示文摘 | Li Yi Zhang Xiangping Lai Shiyao | | 0,,: | 1 |
| 16 | Research on a Novel Medical Image Non-Rigid Registration Method Based on Improved SIFT Algorithm显示文摘 | Wang Anna Wang Zhe Li Shiyao | 2010 | Lecture Notes in Computer Science2010,,3: | 1 |
| 17 | Anisotropies of the g-factor tensor and diamagnetic coefficient in crystal-phase quantum dots in InP nanowires显示文摘Crystal-phase low-dimensional structures offer great potential for the implementation of photonic devices of interest for quantum information processing.In this context,unveiling the fundamental parameters of the crystal phase structure is of much relevance for several applications.Here,we report on the anisotropy of the g-factor tensor and diamagnetic coefficient in wurtzite/zincblende(WZ/ZB)crystal-phase quantum dots(QDs)realized in single InP nanowires.The WZ and ZB alternating axial sections in the NWs are identified by high-angle annular dark-field scanning transmission electron microscopy.The electron(hole)g-factor tensor and the exciton diamagnetic coefficients in WZ/ZB crystal-phase QDs are determined through micro-photoluminescence measurements at low temperature(4.2 K)with different magnetic field configurations,and rationalized by invoking the spin-correlated orbital current model.Our work provides key parameters for band gap engineering and spin states control in crystal-phase low-dimensional structures in nanowires. | Shiyao Wu Kai Peng Sergio Battiato Valentina Zannier Andrea Bertoni Guido Goldoni Xin Xie Jingnan Yang Shan Xiao Chenjiang Qian Feilong Song Sibai Sun Jianchen Dang Yang Yu Fabio Beltram Lucia Sorba Ang Li Bei-bei Li Francesco Rossella Xiulai Xu | 2019 | Nano Research2019,12,11: | 1 |
| 18 | Photosensitive pro-drug nanoassemblies harboring a chemotherapeutic dormancy function potentiates cancer immunotherapy显示文摘Immunotherapy combined with effective therapeutics such as chemotherapy and photodynamic therapy have been shown to be a successful strategy to activate anti-tumor immune responses for improved anticancer treatment.However,developing multifunctional biodegradable,biocompatible,low-toxic but highly efficient,and clinically available transformed nano-immunostimulants remains a challenge and is in great demand.Herein,we report and design of a novel carrier-free photo-chemotherapeutic nano-prodrug COS-BA/Ce6 NPs by combining three multifunctional components-a self-assembled natural small molecule betulinic acid(BA),a water-soluble chitosan oligosaccharide(COS),and a low toxic photosensitizer chlorin e6(Ce6)-to augment the antitumor efficacy of the immune adjuvant anti-PD-L1-mediated cancer immunotherapy.We show that the designed nanodrugs harbored a smart and distinctive“dormancy”characteristic in chemotherapeutic effect with desired lower cytotoxicity,and multiple favorable therapeutic features including improved^(1)O_(2)generation induced by the reduced energy gap of Ce6,pH-responsiveness,good biodegradability,and biocompatibility,ensuring a highly efficient,synergistic photochemotherapy.Moreover,when combined with anti-PD-L1 therapy,both nano-coassembly based chemotherapy and chemotherapy/photodynamic therapy(PDT)could effectively activate antitumor immunity when treating primary or distant tumors,opening up potentially attractive possibilities for clinical immunotherapy. | Jianjun Cheng Haitian Zhao Bin Li Hua Zhang Qianyu Zhao Shiyao Fu Ying Han Weihong Lu Jiahua Shi Xin Yang | 2023 | Acta Pharmaceutica Sinica B2023,13,2: | 0 |
| 19 | Wet-chemical synthesis and applications of amorphous metalcontaining nanomaterials显示文摘In the past decades,metal-containing nanomaterials have attracted increasing interests owing to their intriguing physicochemical properties and various promising applications.Recent research has revealed that the phase of metal-containing nanomaterials could significantly affect their properties and functions.In particular,nanomaterials with amorphous phase,which possess long-range disordered atomic arrangements,and the amorphous/crystalline heterophase nanostructures comprised of both amorphous and crystalline phases,have exhibited superior performance in various applications,e.g.,catalysis and energy storage.In this review,a brief overview of the recent progress on the wet-chemical synthesis and applications of amorphous and amorphous/crystalline heterophase metal-containing nanomaterials has been provided.Subsequently,on the basis of different categories of metal-containing nanomaterials,including metals,metal alloys,and metal compounds,their synthetic routes and promising applications will be highlighted.Finally,current challenges and some personal perspectives in this emerging research field will be proposed. | Jinzhe Liang Yiyao Ge Zhen He Qinbai Yun Guigao Liu Shiyao Lu Li Zhai Biao Huang Hua Zhang | 2023 | Nano Research2023,16,4: | 0 |
| 20 | Synthesis of amorphous Pd-based nanocatalysts for efficient alcoholysis of styrene oxide and electrochemical hydrogen evolution显示文摘Amorphous nanomaterials with long-range disordered structures could possess distinct properties and promising applications,especially in catalysis,as compared with their conventional crystalline counterparts.It is imperative to achieve the controlled preparation of amorphous noble metal-based nanomaterials for the exploration of their phase-dependent applications.Here,we report a facile wet-chemical reduction strategy to synthesize various amorphous multimetallic Pd-based nanomaterials,including PdRu,PdRh,and PdRuRh.The phase-dependent catalytic performances of distinct Pd-based nanomaterials towards diverse catalytic applications have been demonstrated.Specifically,the usage of PdRu nanocatalysts with amorphous and crystalline face-centered cubic(fcc)phases can efficiently switch the ring-opening route of styrene oxide to obtain different products with high selectivity through alcoholysis reaction and hydrogenation reaction,respectively.Moreover,when used as an electrocatalyst for hydrogen evolution reaction(HER),the synthesized amorphous PdRh nanocatalyst exhibits low overpotential and high turnover frequency values,outperforming its crystalline fcc counterpart and most of the reported Pd-based HER electrocatalysts. | Yiyao Ge Jingjie Ge Biao Huang Xixi Wang Guigao Liu Xiang-Huan Shan Lu Ma Bo Chen Guanghua Liu Songmo Du An Zhang Hongfei Cheng Qingbo Wa Shiyao Lu Lujiang Li Qinbai Yun Kuo Yuan Qinxin Luo Zhichuan J.Xu Yonghua Du Hua Zhang | 2023 | Nano Research2023,16,4: | 0 |