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| 1 | Progress of Fabrication and Applications of Electrospun Hierarchically Porous Nanofibers显示文摘In recent years,electrospun nanofibers have attracted great attention for their facile adjustable structure,morphology feature and chemical composition.Especially,significant interest has been devoted to the development of electrospun nanofibers with multiscale pores from micropores and mesopores to macropores,owing to their large specific surface area,hierarchical pore structures,abundant active sites and many other unique properties and applications.This review presents an overview on the design strategies,preparation methods,physical properties and applications of electrospun hierarchical porous nanofibers.At first,electrospinning fabrication of nanofibers with different types of pores including micropores,mesopores,macropores and hierarchical pores are introduced.Then the structures,properties of electrospun porous nanofibers and their applications in several important areas,such as catalysis,energy storage,adsorption and separation,heat insulation and flame retardant,sound absorption and wave absorption,sensor and biomedical are summarized.At last,challenges and potential opportunities of electrospun porous nanofibers in the future are highlighted. | Ranran Liu Lanlan Hou Guichu Yue Huaike Li Jiesan Zhang Jing Liu Beibei Miao Nü Wang Jie Bai Zhimin Cui Tianxi Liu Yong Zhao | 2022 | Advanced Fiber Materials2022,4,4: | 3 |
| 2 | Bioinspired membranes for multi-phase liquid and molecule separation显示文摘Water pollution is a serious problem around the world. It causes the lack of clean drinking water and brings risks to human health.Membrane technology has become a competitive candidate to treat the contaminated wastewater due to its high separation efficiency and low energy consumption. In this review, we introduce the recent development of several kinds of bioinspired separation membranes, involving the membrane design and applications. We emphasize the multi-phase liquid separation membranes inspired from nature with special wettability applied for oil/water separation, organic liquids mixture separation, and emulsion separation. After separating multi-phase liquids using these membranes, small molecule pollutants still exist in singlephase liquid. Therefore, we also expand the scope to small molecule-scale separation membranes, such as the nacre-like graphene oxide separation membrane and other nanofiltration membranes. Summary and outlook concerning the future development of separation membranes are also introduced briefly. | Jingchong Liu Zhimin Cui Lanlan Hou Dianming Li Yuan Gao Li Shuai Jing Liu Jian Jin Nü Wang Yong Zhao | 2019 | Science China Chemistry2019,62,1: | 2 |
| 3 | In-Situ Loading of Noble Metal Nanoparticles on Hydroxyl-Group- Rich Titania Precursor and Their Catalytic Applications显示文摘 | ZhONG Liangshu HU Jinsong CUI Zhimin | 2007 | Chemistry of Materials2007,19,18: | 1 |
| 4 | Synthesis of micrometer-sized nanostructurcd magnesium oxide and its high catalytic activity in the claisen-schmidt condensation reaction显示文摘 | Bain Shaowei Ma Zhuo Cui Zhimin | 2008 | The Journal of Physical Chemistry C2008,112,11: | 1 |
| 5 | Removal of Chromium(VI) from Groundwater Using Oil Shale Ash Supported Nanoscaled Zero-valent Iron显示文摘 | CUI Jian WANG Ende HOU Zhimin ZHOU Rui JIAO Xinqian | 2018 | Chemical Research in Chinese Universities2018,34,4: | 1 |
| 6 | Electrospinning Janus Nanofibrous Membrane for Unidirectional Liquid Penetration and Its Applications显示文摘Janus membrane with opposite wettability on its two sides has witnessed an explosion of interest in the field of liquid spontaneous and directional transport for their promising prospect.The advances in fabrication technology and natural bionics have brought remarkable progress for the development of Janus materials.Among the exciting progress,the micro/nanofabrication technique of electrospinning shows advantages in constructing thin porous fibrous membrane materials with controllable surface wettability and hierarchical structures.Here,a brief review of bioinspired Janus membrane for unidirectional liquid penetration fabricated by electrospinning is presented,and the underlying scientific mechanism is discussed with an emphasis on the materials design involving asymmetric surface wettability and micro-topology structure.An overview of recent emerging applications is also reviewed,with special attentions to liquid separation,water collection,distillation,and smart textile,etc.As researchers keep to develop more efficient strategies on designing new Janus membrane with higher performances,it has become increasingly important to understand the mechanism of liquid moving dynamics at the asymmetric interface in order to better recognize the scientific limitations currently hindering the field development.At last,the challenges currently faced and possible strategies on developing new Janus membranes for optimization and engineering in the future are proposed. | HOU Lanlan LIU Jingchong LI Dianming GAO Yuan WANG Yaqiong HU Rongjun REN Wen XIE Shuixiang CUI Zhimin WANG Nü | 2021 | Chemical Research in Chinese Universities2021,37,3: | 1 |
| 7 | The antigenicity of SARS-CoV-2 Delta variants aggregated 10 high-frequency mutations in RBD has not changed sufficiently to replace the current vaccine strain显示文摘Emerging SARS-CoV-2 variants are the most serious problem for COVID-19 prophylaxis and treatment.To determine whether the SARS-CoV-2 vaccine strain should be updated following variant emergence like seasonal flu vaccine,the changed degree on antigenicity of SARS-CoV-2 variants and H3N2 flu vaccine strains was compared.The neutralization activities of Alpha,Beta and Gamma variants’spike protein-immunized sera were analysed against the eight current epidemic variants and 20 possible variants combining the top 10 prevalent RBD mutations based on the Delta variant,which were constructed using pseudotyped viruses.Meanwhile,the neutralization activities of convalescent sera and current inactivated and recombinant protein vaccine-elicited sera were also examined against all possible Delta variants.Eight HA protein-expressing DNAs elicited-animal sera were also tested against eight pseudotyped viruses of H3N2 flu vaccine strains from 2011–2019.Our results indicate that the antigenicity changes of possible Delta variants were mostly within four folds,whereas the antigenicity changes among different H3N2 vaccine strains were approximately 10–100-fold.Structural analysis of the antigenic characterization of the SARS-CoV-2 and H3N2 mutations supports the neutralization results.This study indicates that the antigenicity changes of the current SARS-CoV-2 may not be sufficient to require replacement of the current vaccine strain. | Jiajing Wu Jianhui Nie Li Zhang Hao Song Yimeng An Ziteng Liang Jing Yang Ruxia Ding Shuo Liu Qianqian Li Tao Li Zhimin Cui Mengyi Zhang Peng He Youchun Wang Xiaowang Qu Zhongyu Hu Qihui Wang Weijin Huang | 2022 | Signal Transduction and Targeted Therapy2022,7,2: | 1 |
| 8 | The synthesis and characterizations of monodisperse cross-linked polymer microspheres with carboxyl on the surface显示文摘 | Xin Chen Zhanchen Cui Zhimin Chen | 2003 | Polymer2003,,43: | 1 |
| 9 | Gold-catalytic green synthesis of Cu_2O/Au/CuO hierarchical nanostructure and application for CO gas sensor显示文摘Hierarchical Cu2O/Au/CuO nanostructures have been achieved by water-based green fabrication at a low temperature.Precluding the requirement of the template removal,the generation of hierarchical architecture relied on the catalytic activity of gold nanoparticles attached on the Cu2O nanocubes.Notably,we creatively developed the dual-roles catalytic ability of gold,which not only remarkably increased the specific surface area of this architecture,but also provided the enhanced performance for gas sensing. | Qian Liu Zhimin Cui Qian Zhang Lin Guo | 2014 | Chinese Science Bulletin2014,59,1: | 1 |
| 10 | Okra‑Like Multichannel TiO@NC Fibers Membrane with Spatial and Chemical Restriction on Shuttle‑Effect for Lithium–Sulfur Batteries显示文摘It is especially important to coordinately design the structure and composition of the host in lithium–sulfur batteries(LSBs)for improving its physicochemical adsorption and conversion of lithium polysulfide,which can alleviate the harmful shuttle effect.Herein,a self-supporting multichannel nitrogen-doped carbon fibers membrane embedded with TiO nanoparticles(TiO@NC)was constructed as the electrode for LSBs.The inner channels and the embedded TiO nanoparticles offer spatial confinement and chemical binding for polysulfides,respectively.Moreover,the TiO nanoparticles have abundant oxygen vacancies that promote the conversion of polysulfides.In addition,the nitrogen-doped carbon skeleton can not only serve as highly conductive transportation paths for electrons,but also integrate with the inner channels to sustain the morphology and bear volume expansion during cycling processes.Therefore,the fabricated self-supporting quadruple-channel TiO@NC ultrathin fibers electrode exhibits a high initial specific capacity of 1342.8 mAh g^(-1)at 0.5 C and high-rate capability of 505.8 mAh g^(-1)at 4.0 C.In addition,it maintains 696.0 mAh g^(-1)over 500 cycles with only 0.059%capacity decay per cycle at the high current density of 2.0 C.The multichannel configuration combined with TiO nanoparticles provides a synergetic design strategy for fabricating high-performance electrodes in LSBs. | Shuai Li Jingchong Liu Linlin Ma Li‑Juan Yu Lanlan Hou Dianming Li Songwei Gao Guichu Yue Zhimin Cui NüWang Xiaoxian Zhao Yong Zhao | 2023 | Advanced Fiber Materials2023,5,1: | 1 |
| 11 | Low dielectric loss and enhanced tunable properties of Mn-doped BST/MgO composites 显示文摘 | CUI Jiandong DONG Guixia YANG Zhimin | 2010 | J Alloy Compd2010,490,35: | 1 |
| 12 | Clinical value of mean platelet volume for impaired cardiopulmonary function in very old male patients with chronic obstructive pulmonary disease显示文摘 | Hua Cui Lin Liu Zhimin Wei Delong Wang Yixin Hu Guoliang Hu Li Fan | 2011 | Archives of Gerontology and Geriatrics2011,,2: | 1 |
| 13 | Design and characterization of a novel Cu_(2.3)Al_(1.3)Ni_(1.7)SnCr_(0.3) multi-principal element alloy coating on magnesium alloy by laser cladding显示文摘The evaporation and dilution of substrate seriously limit the performance of laser cladding coatings on magnesium alloys.In order to overcome the above shortcomings,a multi-step ultrasonic assisted laser remelting technology was proposed to improve the performance of the coating.In this work,a novel Cu_(2.3)Al_(1.3)Ni_(1.7)SnCr_(0.3) multi-principal element alloy coating(MPEAC)was prepared on the surface of mag-nesium alloy.Characterization techniques such as transmission electron microscopy(TEM),electron back scatter diffraction(EBSD)and scanning electron microscopy(SEM)were employed to characterize the microstructure and phase composition of the coatings.And the phase structure and morphology at the interface between the coating and the substrate were also studied via focus ion beam(FIB)and TEM method.In addition,the corrosion and wear resistance ability of the coatings were monitored by potentiodynamic polarization(PDP),and electrochemical impedance spectroscopy(EIS),hardness and friction tests.The results show that Cu_(2.3)Al_(1.3)Ni_(1.7)SnCr_(0.3) MPEAC with ultrasonic assisted is composed of FCC phase and eutectic phases(Cu_(10)Sn_(3) and Cu_(2)Ni_(3)Sn_(3)).Due to the forced convection generated by ultrasonic waves,some Cu and Ni phases are precipitated around Cu_(2)Ni_(3)Sn_(3) phases,which is beneficial to enhance the corrosion resistance.Because of the grain refinement effect caused by ultrasonic,the wear resistance of the coating is also improved.Furthermore,ultrasonic vibration can effectively weaken and eliminate the texture density of the Cu_(2.3)Al_(1.3)Ni_(1.7)SnCr_(0.3) MPEAC fabricated by laser cladding. | Lipeng Jiang Xiufang Cui Guo Jin Zhimin Tian Xin Wen Haoliang Tian Erbao Liu | 2023 | Journal of Materials Science & Technology2023,,21: | 1 |
| 14 | Ceria hol- low nanospheres produced by a template-free microwave-as- sisted hydrothermal method for heavy metal ion removal and catalysis显示文摘 | Cao Changyan Cui Zhimin Chen Chaoqiu | 2010 | J Phys ( hem C2010,114,21: | 1 |
| 15 | Pea-like MoS_(2)@NiS_(1.03)-carbon heterostructured hollow nanofibers for high-performance sodium storage显示文摘The rational synergy of chemical composition and spatial nanostructures of electrode materials play important roles in high-performance energy storage devices.Here,we designed pea-like MoS_(2)@NiS_(1.03)-carbon hollow nanofibers using a simple electrospinning and thermal treatment method.The hierarchical hollow nanofiber is composed of a nitrogen-doped carbon-coated NiS_(1.03) tube wall,in which pea-like uniformly discrete MoS_(2) nanoparticles are enclosed.As a sodium-ion battery electrode material,the MoS_(2)@NiS_(1.03)-carbon hollow nanofibers have abundant diphasic heterointerfaces,a conductive network,and appropriate volume variation-buffering spaces,which can facilitate ion diffusion kinetics,shorten the diffusion path of electrons/ion,and buffer volume expansion during Na^(+)insertion/extraction.It shows outstanding rate capacity and long-cycle performance in a sodium-ion battery.This heterogeneous hollow nanoarchitectures designing enlightens an efficacious strategy to boost the capacity and long-life stability of sodium storage performance of electrode materials. | Songwei Gao Yixiang He Guichu Yue Huaike Li Shuai Li Jingchong Liu Beibei Miao Jie Bai Zhimin Cui Nu Wang Qianfan Zhang Lei Jiang Yong Zhao | 2023 | Carbon Energy2023,5,4: | 1 |
| 16 | Ceria hollow nanospheres produced by a template -free micro-wave- assisted hydrothermal method for heavy metal ion removal and catalysis显示文摘 | Cao Changyan Cui Zhimin Chen chaoqiu | 2010 | J Phys Chem C2010,114,: | 1 |
| 17 | Insights into the mechanism of methanol-to-olefin conversion at zeolites with systematically selected framework structures显示文摘 | Cui Zhimin Liu Qiang Song Weiguo | 2006 | Angew Chem Int Ed2006,45,48: | 1 |
| 18 | Exploring the salt-and drought-tolerant genes of alfalfa through expression library screening strategy显示文摘Salinity and drought stress are major abiotic stresses negatively affecting the growth and productivity of alfalfa(Medicago sativa L.).Exploration of genes exhibiting superior tolerance to salinity and drought stress in alfalfa will help aid target molecular breeding and developing tolerant forages.In this study,we adopted a high-efficient yeast FOX hunting system for the identification of salinity and drought tolerant genes in alfalfa.Based on the Gateway-compatible vector system,a high-quality expression library was constructed,containing 1.3×10^(7) clones with an average size of 1.44 kb.Through heterologous transformation of mixed library plasmid into salt or drought sensitive yeast mutants,monoclonal resistant strains were screened and tolerant genes were captured.Eighteen salinity-tolerance genes were obtained which were involved in several pathways,containing GRAS and zinc finger transcriptional factors,PP2A interaction module,ERVT vesicle transporter and LETM transmembrane protein.Twelve drought tolerance genes were separated,including ERF and SCL transcriptional factors,CIPK and BSK protein kinases,TGL-type ligase,cPGM and cPDL protease.The mRNA transcription levels of these tolerant genes were inducible or suppressible for response to salt or drought stress conditions following quantitative PCR detection,respectively.Furthermore,heterologous transformation of ERVT and CIPK11 can improve the salt and drought stress tolerance in Arabidopsis,which indicates the conservative function of the screening gene in yeast and Arabidopsis.Obtaining these candidate genes can provide new insights for future research with respect to plant salt and drought tolerance. | Zhihua Li Yue Zou Yanpeng Li Cancan Sun Yu Liu Liwen Cui Jun Liu Zhimin Yang Yu Chen | 2021 | Grass Research2021,1,1: | 0 |
| 19 | A video camera recording method for measuring terminal velocity of seed dispersal by wind显示文摘An accurate and convenient method is essential for measuring the terminal velocity of seeds dispersed by wind.Systematic and random errors produced by existing methods lower the accuracy and convenience in determining seed terminal velocity.In this study,a video camera was used to record the falling process of forty-one species of wind-borne seed with eight appendage structures and seven aerodynamic behaviors in a settling tower at a speed of 50 frames per second(fps).The videos were analyzed by Quick Time Player to determine seed acceleration height,acceleration time,and terminal velocity.The results showed that acceleration height and time,terminal velocity,and the diff erence between terminal velocity and descent velocity(DTD)increased with wing loading.Compared with dropping methods,the camera recording method eliminated the eff ect of acceleration and corrected seed terminal velocity.Based on wing loading,release heights were determined for accurate measurement of terminal velocity of diff erent seeds.This method,due to its inexpensive equipment,high accuracy,easy observation and operation,can be applied to measure the terminal velocity of wind dispersed seeds,and provides a promising method in exploring the dispersal process of seeds. | Minghu Liu Zhiming Xin Zhi Su Yingming Zhao Xinle Li Zhimin Liu Mariano ACony Wei Liang Xuanping Qin Jianqiang Qian Xue Cui Quanlai Zhou | 2021 | Journal of Forestry Research2021,32,1: | 0 |
| 20 | LPS-induced mitochondrial DNA synthesis and release facilitate RAD50-dependent acute lung injury显示文摘Dear Editor,ATP-binding cassette(ABC)-ATPase(RAD50),together with meiotic recombination 11 homolog 1(MRE11)subunits,to form MRE11-RAD50 complex,plays important roles in recognition of double-stranded DNA(dsDNA)and initiation of consequent inflammatory cascade1.Acute lung injury(ALI)and acute respiratory destress syndrome(ARDS)are systemic uncontrolled inflammation and life-threatening.However,the function of the DNA sensor in ALI/ARDS remains poorly defined.Here we investigated functions of RAD50 using mouse primary macrophages and conditionally RAD50 knockout mice in vitro and in a lipopolysaccharide(LPS)-induced lung injury model. | Xueqin Zhan Rui Cui Xinwei Geng Jiaqian Li Yunlian Zhou Lulu He Chao Cao Chao Zhang Zhimin Chen Songmin Ying | 2021 | Signal Transduction and Targeted Therapy2021,6,4: | 0 |