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28篇 您的检索式:作者名="Yanhui PAN"
    题名 作者 年代 出处 被引量
1Removal of copper ions from aqueous solution by calcium alginate immobilized kaolin显示文摘Kaolin has been widely used as an adsorbent to remove heavy metal ions from aqueous solutions.However,the lower heavy metal adsorption capacity of kaolin limits its practical application.A novel environmental friendly material,calcium alginate immobilized kaolin (kaolin/CA),was prepared using a sol-gel method.The effects of contact time,pH,adsorbent dose,and temperature on Cu 2+ adsorption by kaolin/CA were investigated.The Langmuir isotherm was used to describe the experimental adsorption,the maximum Cu 2+ adsorption capacity of the kaolin/CA reached up to 53.63 mg/g.The thermodynamic studies showed that the adsorption reaction was a spontaneous and endothermic process.Yanhui Li Bing Xia Quansheng Zhao Fuqiang Liu Pan Zhang Qiuju Du DechangWang Da Li ZonghuaWang Yanzhi Xia 2011Journal of Environmental Sciences2011,23,3:14
2Layered double hydroxide(LDH) for multi-functionalized corrosion protection of metals: A review显示文摘Layered double hydroxide(LDH) has been widely developed in the field of corrosion and protection in recent years based on its unique characteristics including anion capacity, anion exchange ability, structure memory effect, and barrier resistance. This paper comprehensively reviews recent work on the preparations, properties of LDH in the forms of powder and film and their applications in different environments in corrosion and protection. Some novel perspectives are also proposed at the end of the review for future research in corrosion and protection field.Yanhui Cao Dajiang Zheng Fan Zhang Jinshan Pan Changjian Lin 2022Journal of Materials Science & Technology2022,,7:9
3USP47-mediated deubiquitination and stabilization of YAP contributes to the progression of colorectal cancer显示文摘Dear Editor,The Hippo tumor suppressor pathway plays an important role in development and tumorigenesis.Yes-associated protein(YAP)is a major effector of the Hippo pathway regulating the expression of genes involved in cell proliferation,cell death,and cell differentiation(Pan,2010;Johnson and Haider,2014;Piccolo etal.,2014;Yu etal.,2015).In intestine,YAP is mainly expressed in leucine rich repeat containing G protein-coupled receptor 5(LGR5)marked stem cells,and is required for regeneration following tissue damage and the development of colon cancer in mice(Cai etal.,2010;Barry etal.,2013;Wang etal.,2017).Moreover,in colorectal cancer(CRC)specimens,elevated YAP expression and activity is frequently observed(Steinhardt et al.,2008).It has been shown that high YAP expression is associated with cancer metastasis,poor prognosis,resistance to chemotherapy,and greater possibility of relapse(Johnson and Haider,2014;Yu etal.,2015).Beiqing Pan Yi Yang Jian Li Yu Wang Chuantao Fang Fa-Xing Yu Yanhui Xu 2020Protein & Cell2020,11,2:4
4Polymer matrix mediated solvation of LiNO3 in carbonate electrolytes for quasi-solid high-voltage lithium metal batteries显示文摘Lithium(Li)metal is one of the most promising anodes for next-generation energy storage systems.However,the Li dendrite formation and unstable solid-electrolyte interface(SEI)have hindered its further application.Lithium nitrate(LiNO3)is extensively used as an effective electrolyte additive in ether-based electrolytes to improve the stability of lithium metal.Nevertheless,it is rarely utilized in carbonate electrolytes due to its low solubility.Here,a novel gel polymer electrolyte(GPE)consisting of poly(vinylidene fluoride)(PVDF),poly(methyl methacrylate)(PMMA),poly(ethylene oxide)(PEO)with LiN03 additive is proposed to solve this issue.In this GPE,polyether-based PEO serves as a matrix for dissolving LiNO3 which can be decomposed into a fast Li-ion conductor(Li3N)in conventional carbonate electrolytes to enhance the stability and Li^+conductivity of the SEI film.As a result,dendrite formation is effectively suppressed,and a significantly improved average Coulombic efficiency(CE)of 97.2%in Li-Cu cell is achieved.By using this novel GPE coupled with Li anode and LiNi0.5Mn0.3Co0.2O2(NMC532),excellent capacity retention of 94.1%and high average CE of over 99.2%are obtained after 200 cycles at 0.5 C.This work presents fresh insight into practical modification strategies on high-voltage Li metal batteries.Zijian Wang Kai Yang Yongli Song Hai Lin Ke Li Yanhui Cui Luyi Yang Feng Pan 2020Nano Research2020,13,9:3
5Measurements of liquid-liquid equilibria for quaternary mixture of water,mehtyl tert-butyl ether,and diisopropyl ether with methanol or ethanol显示文摘Chen Yao Pan Zhongjuan Dong Yanhui 2005Journal of Chemical and Engineering Data2005,50,3:1
6Rare earth–Mg–Ni-based hydrogen storage alloys as negative electrode materials for Ni/MH batteries显示文摘Yongfeng Liu Yanhui Cao Li Huang Mingxia Gao Hongge Pan 2010Journal of Alloys and Compounds2010,,3:1
7Adsorption of fluoride from aqueous solution by graphene 显示文摘Li Yanhui Zhang Pan Du Qiuju 2011J Colloid Interface Sci2011,363,1:1
8Structural insights into the activation of ATM kinase显示文摘Dear Editor, ATM (ataxia telangiectasia-mutated) is a master regulator in response to DNA damage and activates downstream pathways involved in cell cycle checkpoints, DNA damage repair, transcription regulation, immune response, central nervous system development and metabolism.1,2 Loss of ATM activity in human results in the pleiotropic neurodegeneration disorder ataxia-telangiectasia (A-T) that is characterized by immunodeficiency, cancer predisposition, premature aging and insulin-resistant diabetes.3,4,5 Despite extensive studies over the past two decades,6,7 it remains controversial how ATM is activated. Particularly, whether ATM exists in a monomeric form, whether the monomer is more active than dimer, and how dimer-to-monomer transition affects the ATM kinase activity, remain controversial.Jianxiong Xiao Mengjie Liu Yilun Qi Yuriy Chaban Chao Gao Beiqing Pan Yuan Tian Zishuo Yu Jie Li Peijun Zhang Yanhui Xu 2019Cell Research2019,29,8:1
9Removal of copper from aqueous solution by carbon nanotube/calcium alginate composites显示文摘Yanhui Li Fuqiang Liu Bing Xia Qiuju Du Pan Zhang Dechang Wang Zonghua Wang Yanzhi Xia 2010Journal of Hazardous Materials2010,,1:1
10Removal of lead from aqueous solution by activated carbon prepared from Enteromorpha prolifera by zinc chloride activation显示文摘Yanhui Li Qiuju Du Xiaodong Wang Pan Zhang Dechang Wang Zonghua Wang Yanzhi Xia 2010Journal of Hazardous Materials2010,,1:1
11The first local case of mpox caused by an imported case in the Chinese mainland显示文摘Monkeypox (mpox) is a zoonotic disease caused by the mpox virus (MPXV) that has been primarily limited to Central and West African nations since its discovery. The recent spread of the West African lineage of MPXV in historically unaffected countries has raised concerns for global public health. Despite a significant decrease in global mpox cases, there is still a risk of a global resurgence. This study reports the first local case of mpox caused by an imported case in the Chinese mainland. Polymerase chain reaction (PCR) diagnosed the two cases, and the viral genomes were obtained by next-generation sequencing. Genomic analysis revealed that the two strains shared an identical genome sequence and belonged to the B.1.3 branch of the West African lineage, which is the first local case of mpox caused by an imported case in the Chinese mainland, highlighting the potential threat of mpox in China and the immediate need for adequate surveillance measures.Daitao Zhang Xiao Qi Fu Li Yanhui Chu Ke Wu Jia Li Xin Meng Xiangfeng Dou Zhenyong Ren Haoyuan Jin Shuang Li Yulan Sun Yanwei Chen Renqing Li Dan Li Weihong Li Yang Yang Yang Pan Wenjie Tan Quanyi Wang 2023Biosafety and Health2023,5,4:1
12Fast-chargingand dendrite-free lithiummetal anodeeenabledby partial lithiation ofgraphene aerogel显示文摘The development of deeply cyclable lithium metal batteries with fast-charging capability offers a promising solution to relieve the“range anxiety”in driving electric vehicles.Conventional lithium metal anodes suffered from low operating current densities and shallow charge/discharge depths,owing to the intrinsic dendrite growth governed by Sand’s law.Herein,we come up with a novel design of heavy-duty lithium metal anode fabricated by partially infusing the three-dimensional(3D)porous graphene aerogel with molten Li.Both electroanalytical measurements and simulations show that the unique electrode architecture brings notable advantages in mediating smooth Li plating/stripping,including reduced local current density,inhibited dendrite growth,buffered volume fluctuation,as well as more efficient Li utilization.Consequently,a remarkable cycling performance in symmetric cells for over 400 cycles(800 h)with an ultrahigh cycling capacity of 15 mAh·cm^(−2) at 15 mA·cm^(−2) is achieved,which,to our best knowledge,has been never seen in literature.LiFePO4 full cells demonstrate a superb rate capability up to 10 C and a prolonged cycling of 1,600 cycles at 2 C with the per-cycle capacity decay of only 0.023%.This study paves the way for the ultimate deployment of lithium metal batteries in real-world applications that require fast charging and deep cycling.Yong Ma Yuting Gu Ying He Le Wei Yuebin Lian Weiyi Pan Xinjian Li Yanhui Su Yang Peng Zhao Deng Zhongfan Liu 2022Nano Research2022,15,11:1
13Cognitive function with glucose tolerance status and obesity in Chinese middle-aged and aged adults显示文摘Yanhui Lu Juming Lu Shuyu Wang Chunlin Li Lisheng Liu Runping Zheng Hui Tian Xianling Wang Lijuan Yang Yuqing Zhang Changyu Pan 2012Aging & Mental Health2012,,7:1
14Adsorption of fluoride from aqueous solution by graphene显示文摘Yanhui Li Pan Zhang Qiuju Du Xianjia Peng Tonghao Liu Zonghua Wang Yanzhi Xia Wei Zhang Kunlin Wang Hongwei Zhu Dehai Wu 2011Journal of Colloid And Interface Science2011,,1:1
15Identification of the key weather factors affecting overwintering success of Apo@gus lucorum eggs in dead host tree branches 显示文摘Pan Hongsheng Liu Bing Lu Yanhui 2014PLoS ONE2014,9,94:1
16Assemblyof CdS nanoparticles on the two-dimensi onal graphene scaf-fold as visible-light-driven photocatalyst for selective organictransformation under ambient conditions 显示文摘Zhang Nan Zhang Yanhui Pan Xiaoyang? 2011J Phys ChemC2011,115,23:1
17A Polarization Programmable Antenna Array显示文摘Reconfigurable antennas are becoming a major antenna technology for future wireless communications and sensing systems.It is known that,with a single linear polarization(LP)reconfigurable antenna element,a preferred polarization can be produced from a set of multiple polarization states,thus improving the quality of the communication link.This paper presents a new concept of a polarization programmable reconfigurable antenna array that consists of a number of polarization reconfigurable antenna elements with a finite number of possible polarization states.By employing a new optimization strategy and programming the polarization states of all the array elements,we demonstrate that it is possible to realize any desired LP in the vectorial array radiation pattern with accurate control of sidelobe and crosspolarization levels(XPLs),thereby achieving the desired polarization to perfectly match that of the required communications signal.Both numerical and experimental results are provided to prove the concept,and they agree well with each other.Dingzhao Chen Yanhui Liu Ming Li Pan Guo Zhuo Zeng Jun Hu Y.Jay Guo 2022Engineering2022,,9:0
18Substation clustering based on improved KFCM algorithm with adaptive optimal clustering number selection显示文摘The premise and basis of load modeling are substation load composition inquiries and cluster analyses.However,the traditional kernel fuzzy C-means(KFCM)algorithm is limited by artificial clustering number selection and its convergence to local optimal solutions.To overcome these limitations,an improved KFCM algorithm with adaptive optimal clustering number selection is proposed in this paper.This algorithm optimizes the KFCM algorithm by combining the powerful global search ability of genetic algorithm and the robust local search ability of simulated annealing algorithm.The improved KFCM algorithm adaptively determines the ideal number of clusters using the clustering evaluation index ratio.Compared with the traditional KFCM algorithm,the enhanced KFCM algorithm has robust clustering and comprehensive abilities,enabling the efficient convergence to the global optimal solution.Yanhui Xu Yihao Gao Yundan Cheng Yuhang Sun Xuesong Li Xianxian Pan Hao Yu 2023Global Energy Interconnection2023,6,4:0
19Chromosome-scale genome sequence of Suaeda glauca sheds light on salt stress tolerance in halophytes显示文摘Soil salinity is a growing concern for global crop production and the sustainable development of humanity.Therefore,it is crucial to comprehend salt tolerance mechanisms and identify salt-tolerance genes to enhance crop tolerance to salt stress.Suaeda glauca,a halophyte species well adapted to the seawater environment,possesses a unique ability to absorb and retain high salt concentrations within its cells,particularly in its leaves,suggesting the presence of a distinct mechanism for salt tolerance.In this study,we performed de novo sequencing of the S.glauca genome.The genome has a size of 1.02 Gb(consisting of two sets of haplotypes)and contains 54761 annotated genes,including alleles and repeats.Comparative genomic analysis revealed a strong synteny between the genomes of S.glauca and Beta vulgaris.Of the S.glauca genome,70.56%comprises repeat sequences,with retroelements being the most abundant.Leveraging the allele-aware assembly of the S.glauca genome,we investigated genome-wide allele-specific expression in the analyzed samples.The results indicated that the diversity in promoter sequences might contribute to consistent allele-specific expression.Moreover,a systematic analysis of the ABCE gene families shed light on the formation of S.glauca’s flower morphology,suggesting that dysfunction of A-class genes is responsible for the absence of petals in S.glauca.Gene family expansion analysis demonstrated significant enrichment of Gene Ontology(GO)terms associated with DNA repair,chromosome stability,DNA demethylation,cation binding,and red/far-red light signaling pathways in the co-expanded gene families of S.glauca and S.aralocaspica,in comparison with glycophytic species within the chenopodium family.Time-course transcriptome analysis under salt treatments revealed detailed responses of S.glauca to salt tolerance,and the enrichment of the transition-upregulated genes in the leaves associated with DNA repair and chromosome stability,lipid biosynthetic process,and isoprenoid metabolic process.Additionally,genome-wide analysis of transcription factors indicated a significant expansion of FAR1 gene family.However,further investigation is needed to determine the exact role of the FAR1 gene family in salt tolerance in S.glauca.Yan Cheng Jin Sun Mengwei Jiang Ziqiang Luo Yu Wang Yanhui Liu Weiming Li Bing Hu Chunxing Dong Kangzhuo Ye Zixian Li Fang Deng Lulu Wang Ling Cao Shijiang Cao Chenglang Pan Ping Zheng Sheng Wang Mohammad Aslam Hong Wang Yuan Qin 2023Horticulture Research2023,10,9:0
20Hydroxylated metal–organic-layer nanocages anchoring single atomic cobalt sites for robust photocatalytic CO_(2) reduction显示文摘Assembly of two-dimensional(2D)metal–organic layers(MOLs)based on the hard and soft acid–base theorem represents an exquisite strategy for the construction of photocatalytic platforms in virtue of the highly exposed active sites,much improved mass transport,and greatly elevated stability.Herein,nanocages composed of MOLs are produced for the first time through a cosolvent approach utilizing zirconium-based UiO-66-(OH)2 as the structural precursor.To endow the catalytic activity for CO_(2) conversion,single atomic Co^(2+)sites are appended to the Zr-oxo nodes of the MOL cages,demonstrating a remarkable CO yield of 7.74 mmol·g^(-1)·h^(-1) and operational stability of 97.1%product retention after five repeated cycles.Such an outstanding photocatalytic performance is mainly attributed to the unique nanocage morphology comprising enormous 2D nanosheets for augmented Co^(2+)exposure and the abundant surface hydroxyl groups for local CO_(2) enrichment.This work underlines the tailoring of both metal–organic framework(MOF)morphology and functionality to boost the turnover rate of photocatalytic CO_(2) reduction reaction(CO_(2)RR).Weiyi Pan Zhihe Wei Yanhui Su Yuebin Lian Zhangyi Zheng Huihong Yuan Yongze Qin Xulan Xie Qianqian Bai Zhenyang Jiao Wei Hua Jinzhou Chen Wenjun Yang Zhao Deng Yang Peng 2024Nano Research2024,17,4:0
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