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14篇 您的检索式:作者名="Wang Congli"
    题名 作者 年代 出处 被引量
1Antimony speciation in the environment:Recent advances in understanding the biogeochemical processes and ecological effects显示文摘Antimony(Sb) is a toxic metalloid, and its pollution has become a global environmental problem as a result of its extensive use and corresponding Sb-mining activities. The toxicity and mobility of Sb strongly depend on its chemical speciation. In this review, we summarize the current knowledge on the biogeochemical processes(including emission, distribution,speciation, redox, metabolism and toxicity) that trigger the mobilization and transformation of Sb from pollution sources to the surrounding environment. Natural phenomena such as weathering, biological activity and volcanic activity, together with anthropogenic inputs, are responsible for the emission of Sb into the environment. Sb emitted in the environment can adsorb and undergo redox reactions on organic or inorganic environmental media, thus changing its existing form and exerting toxic effects on the ecosystem. This review is based on a careful and systematic collection of the latest papers during 2010–2017 and our research results, and it illustrates the fate and ecological effects of Sb in the environment.Mengchang He Ningning Wang Xiaojing Long Chengjun Zhang Congli Ma Qianyun Zhong Aihua Wang Ying Wang Aneesa Pervaiz Jun Shan 2019Journal of Environmental Sciences2019,31,1:40
2MXR7 facilitates liver cancer metastasis via epithelial-mesenchymal transition显示文摘MXR7 is a cell-surface protein and highly expressed in hepatocellular carcinoma(HCC). The aim of this study is to determine the expression profile of MXR7 in HCC and investigate the influence of MXR7 on invasion and metastasis of HCC cells. For this purpose, immunohistochemical assay was used to identify the differential expression of MXR7 in 94 HCC specimens. Expression of MXR7 in 4 pairs of HCC and portal vein tumor thrombus(PVTT) was also tested. The motility of HCC cells were characterized by transwell migration and matrigel invasion assays. In vivo metastasis potential was determined via tail vein injection assay.Moreover, compared with noninvasive HCC tumors or human HCC cell lines with low metastatic potential, invasive HCC samples and HCC cell lines with high metastatic potential exhibited higher MXR7 expression. Furthermore, forced expression of MXR7 in SMMC-7721 promoted cell proliferation, migration and invasion in vitro and accelerated tumor growth and metastasis in vivo. Conversely, knockdown of MXR7 expression in HuH7 cells inhibited proliferation and motility of cells. Mechanically,overexpression of MXR7 promoted epithelial-mesenchymal transition(EMT) progress, and MXR7 depletion repressed the EMT phenotype. In conclusion, MXR7 is a mediator of EMT and metastasis in HCC and may serve as a novel therapeutic target.guishuai lv yexiong tan hongwei lv tian fang changzheng wang ting li yanting yu congli hu wen wen hongyang wang wen yang 2017Science China(Life Sciences)2017,60,11:2
3β-Cyclodextrin and Its Derivatives Functionalized Magnetic Nanoparticles for Targeting Delivery of Curcumin and Cell Imaging显示文摘Yehong Zhou Congli Wang Fei Wang Chenzhong Li Chuan Dong Shaomin Shuang 2016Chinese Journal of Chemistry2016,34,6:2
4Revealing structural degradation in layered structure oxides cathode of lithium ion batteries via in-situ transmission electron microscopy显示文摘Transition metal oxides with layered structure have been widely used as cathode materials for lithium-ion batteries(LIBs)which have relatively high energy density,large capacity and long life.However,in the long-term electrochemical cycle,the inevitable degradation of performance of LIBs due to structural degradation in cathodes severely restricts their large-scale practical applications.Understanding the underlying mechanism of structural degradation is the most critical scientific problem.Recently,in situ transmission electron microscopy(TEM)has become a useful tool to study the structural and compositional evolutions at atomic scale in electrochemical reactions,which provided a unique and in-depth understanding of the structural degradation.In this review,we discuss the recent advances in the in situ TEM,focusing on its role in revealing the structural degradation mechanisms in the four key places:(1)the interface between the cathodes and electrolyte;(2)the cathode surface;(3)the particle interior and(4)those induced by thermal effect.The insight gained by the in-situ TEM which is still developing at its fast pace is unique and expected to provide guidance for designing better layered cathode materials.Fanjie Xia Weihao Zeng Haoyang Peng Hong Wang Congli Sun Ji Zou Jinsong Wu 2023Journal of Materials Science & Technology2023,,23:1
5Gate-tunable large-scale flexible monolayer MoS_(2)devices for photodetectors and optoelectronic synapses显示文摘Photodetectors and optoelectronic synapses are vital for construction of artificial visual perception system.However,the hardware implementations of optoelectronic-neuromorphic devices based on conventional architecture usually suffer from poor scalability,light response range,and limited functionalities.Here,large-scale flexible monolayer MoS_(2)devices integrating photodetectors and optoelectronic synapses over the entire visible spectrum in one device have been realized,which can be used in photodetection,optical communication,artificial visual perception system,and optical artificial neural network.By modulating gate voltages,we enable MoS_(2)-based devices to be photodetectors and also optoelectronic synapses.Importantly,the MoS_(2)-based optoelectronic synapses could implement many synaptic functions and neuromorphic characteristics,such as short-term memory(STM),long-term memory(LTM),paired-pulse facilitation(PPF),long-term potentiation(LTP)/long-term depression(LTD),and“learning-experience”behavior.Furthermore,an associative learning behavior(the classical conditioning Pavlov’s dog experiment)was emulated using paired stimulation of optical and voltage pulses.These results facilitate the development of MoS_(2)-based multifunctional optoelectronic devices with a simple device structure,showing great potential for photodetection,optoelectronic neuromorphic computing,human visual systems mimicking,as well as wearable and implantable electronics.Na Li Congli He Qinqin Wang Jianshi Tang Qingtian Zhang Cheng Shen Jian Tang Heyi Huang Shuopei Wang Jiawei Li Biying Huang Zheng Wei Yutuo Guo Jiahao Yuan Wei Yang Rong Yang Dongxia Shi Guangyu Zhang 2022Nano Research2022,15,6:1
6Partipation of β-endophin in the negative feedack regulation of estrogen 显示文摘 Wang Hong Zhang Congli 1990Acta Zool Sin1990,36,:1
7Preparation and electrochemical performances of nanostructured Co x Ni 1? x (OH) 2 composites for supercapacitors显示文摘Xinwei Liu Jichun Huang Xiaopei Wei Congli Yuan Tong Liu Dianxue Cao Jinling Yin Guiling Wang 2013Journal of Power Sources2013,,:1
8Molecular characterization of a porcine kobuvirus strain in China显示文摘Changsong Wang Daoliang Lan Li Cui Zhibiao Yang Congli Yuan Xiuguo Hua 2012Archives of Virology2012,,3:1
9Autocatalytic reduction-assisted synthesis of segmented porous PtTe nanochains for enhancing methanol oxidation reaction显示文摘Morphology engineering has been developed as one of the most widely used strategies for improving the performance of electrocatalysts.However,the harsh reaction conditions and cumbersome reaction steps during the nanomaterials synthesis still limit their industrial applications.Herein,one-dimensional(1D)novel-segmented PtTe porous nanochains(PNCs)were successfully synthesized by the template methods assisted by Pt autocatalytic reduction.The PtTe PNCs consist of consecutive mesoporous architectures that provide a large electrochemical surface area(ECSA)and abundant active sites to enhance methanol oxidation reaction(MOR).Furthermore,1D nanostructure as a robust sustaining frame can maintain a high mass/charge transfer rate in a long-term durability test.After 2,000 cyclic voltammetry(CV)cycles,the ECSA value of PtTe PNCs remained as high as 44.47 m^(2)·gPt^(-1),which was much larger than that of commercial Pt/C(3.95 m^(2)·gPt^(-1)).The high catalytic activity and durability of PtTe PNCs are also supported by CO stripping test and density functional theory calculation.This autocatalytic reduction-assisted synthesis provides new insights for designing efficient low-dimensional nanocatalysts.Qiqi Zhang Tianyu Xia He Huang Jialong Liu Mengyuan Zhu Hao Yu Weifeng Xu Yuping Huo Congli He Shipeng Shen Cong Lu Rongming Wang Shouguo Wang 2023Nano Research Energy2023,2,1:1
10Self-assembly of DNA Nanostructures via Bioinspired Metal Ion Coordination显示文摘Despite a growing interest in DNA nanomaterials,their simple synthesis remains a challenge.A simple and general strategy for constructing DNA-based nanomaterials by metal ion coordination is reported.The me-tal-DNA nanoparticles(NPs)could be synthesized with DNA molecules of diverse sequence and various metal ions of intrinsic property,resulting in multifunctional NPs with the combined advantages of both inorganic and DNA building blocks.It is demonstrated that the hybrid metal-DNA NPs could be engineered for magnetic resonance and luminescence imaging,encapsulation of multifarious nucleic acids with controlled ratio,and co-assembly with small drug molecules.Furthermore,because these metal-DNA NPs exhibited enhanced cellular uptake compared to free synthetic DNA,they hold potential for applications in diagnostics and therapeutics.WANG Congli DI Zhenghan FAN Zetan LI Lele 2020Chemical Research in Chinese Universities2020,36,2:0
11Research Advances in Genetic Markers for Resistance to Soybean Cyst Nematodes(SCN)显示文摘Soybean cyst nematode(SCN), Heterodera glycine, is one of the important diseases affecting the yield of soybean(Glycine max) worldwide. Host-plant resistance is the most economically effective way to control SCN. Identification of DNA markers linked to SCN resistance genes is one of the important steps in the marker-assisted selection(MAS) for nematode resistance breeding. Quantitative trait loci(QTLs) controlled by mul-tiple resistance genes plays a powerful role in MAS-breeding program. In this paper, we reviewed genetic resistance of SCN, molecular markers of resistance gene and Genome-Wide Associated Study(GWAS) of QTLs linked to SCN resistance, explored the present problems of genetic resistance,and prospected the future of QTL analysis.Wang Congli 2019Plant Diseases and Pests2019,10,1:0
12Analysis of Formation Conditions of Shale Oils in the Changling Depression,Sourthern Songliao Basin显示文摘1 Introduction Previous research has reported that organic-rich shale is hydrocarbon source rock or good hydrocarbon sealing barrier,while it is not oil and gas reservoir.Therefore,it has not gained attention in the oil and gas exploration and development.However,with the discovery of rich oils in shale,shale has been proven to be a good resource ofZHANG Xi WANG Congli 2015Acta Geologica Sinica(English Edition)2015,89,A01:0
13Study on MIP Technology for Production of EUROⅣClean Gasoline 1.Analysis of Rules for Transformation of Sulfur Compounds and Factors Influencing Sulfur Content in MIP Naphtha显示文摘The rules of MIP reactions for catalytic cracking of sulfur compounds and its influence on the sulfur content in the MIP naphtha were studied.The mam factors influencing the sulfur content in the MIP naphtha were thought to be the sulfur content of feedstock and were closely related with the olefin content of naphtha.Taking into account the characteristic features of MIP process,the methods for reducing the sulfur content in the MIP naphtha were comprised of decreasing the sulfur content of feedstock by hydrotreating and decreasing the olefin content of naphtha through promoting hydrogen transfer reactions.Therefore,the EuroⅣclean gasoline with low sulfur content and low olefin content could be obtained directly through the MIP technology.Tang Jinlian Xu Youhao Cheng Congli Wang Xieqing (Research Institute of Petroleum Processing,SINOPEC,Beijing 100083,China) 2009China Petroleum Processing & Petrochemical Technology2009,11,4:0
14A novel method of automatic peeling for Poria cocos based on image processing显示文摘Manual peeling of Poria cocos has low efficiency and large loss,and other peeling methods are not suitable for Poria cocos peeling.To solve this problem,this study designed and fabricated a set of automatic peeling equipment for Poria cocos,which combined image processing technology with the structure and function of the vertical milling machine.This paper mainly reports the image detection algorithm of Poria cocos epidermis position for automatic peeling.Firstly,the blue marks were glued to the movable and the immovable parts of clamping parts,and the initial window was determined through them.Then,the grayscale image within the initial window was obtained with the help of the chromatic aberration|2r-g-b|(red(r),green(g),blue(b)of pixels).The processing window was calculated with the aid of the distribution graph of the grayscale accumulation.Next,the grayscale image was taken into the process of the automatic binarization based on the Otsu method and the binary image was restored through dilation,erosion and denoising algorithm.Finally,pixel columns in the processing window were scanned column-by-column from the left to the right and the direction of each pixel column is from the bottom to the top.The first pixel with a value of 0 on each pixel column was set as the epidermis position of the current pixel column.The experiment results implied that,under the set light source,the average detection accuracy was 98.8%,and the average time to detect epidermis position once was 0.024 s.The detection accuracy and real-time performance of this algorithm meets the actual operation requirements of Poria cocos peeling.It lays the foundation for the automatic peeling operation of Poria cocos.Xiongchu Zhang Bingqi Chen Zhi'an Zheng Wenjie Wang Xin Fang Congli Zhang 2023International Journal of Agricultural and Biological Engineering2023,16,2:0
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