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28篇 您的检索式:作者名="Xie Lijing"
    题名 作者 年代 出处 被引量
1The endoplasmic reticulum-associated degradation is necessary for plant salt tolerance显示文摘真核细胞的有机体有允许错误褶层或 unassembled 蛋白质在 endoplasmic 蜂窝胃被保留的质量控制的机制(嗯) 并且随后由嗯联系降级(ERAD ) 降级了。ERAD 小径很好在酵母和哺乳动物被学习;然而,植物 ERAD 的生物功能没被报导。通过分子、细胞的生物途径,我们发现 ERAD 是必要的让植物克服盐应力。在蛋白质在植物房间增加了的盐处理 ubiquitinated 之上,特别展开了快速在 ER 积累了并且随后导致了的蛋白质嗯压力回答。在 ERAD 小径的 HRD1/HRD3 建筑群的 HRD3A 的缺点导致了展开的蛋白质反应(UPR ) 的改变,腌的增加的植物敏感,和在植物房间的 ERAD 底层的保留。而且,我们证明从 ER 的那个 Ca 2+ 版本涉及 UPR 的举起,反应的氧种类(ROS ) 参与 ERAD 相关的植物盐反应小径。Lijing Liu Feng Cui Qingliang Li Bojiao Yin Huawei Zhang Baoying Lin Zaorong Wu Ran Xia Sanyuan Tang Qi Xie 2011Cell Research2011,21,6:19
2Structure evolution of oxygen removal from porous carbon for optimizing supercapacitor performance显示文摘The presence of oxygen functional groups is detrimental to the capacitive performance of porous carbon electrode in organic electrolyte. In this regards, hydrogen thermal reduction has been demonstrated effective approach in removing the unstable surface oxygen while maintaining the high porosity of carbon matrix. However, the exact evolution mechanism of various oxygen species during this process, as well as the correlation with electrochemical properties, is still under development. Herein, biomass-based porous carbon is adopted as the model material to trace its structure evolution of oxygen removal under hydrogen thermal reduction process with the temperature range of 400–800 °C. The optimum microstructure with low oxygen content of 0.90% and proper pore size distribution was achieved at 700°C. XPS, TPRMS and Boehm titration results indicate that the oxygen elimination undergoes three distinctive stages(intermolecular dehydration, hydrogenation and decomposition reactions). The optimum microstructure with low oxygen content of 0.90% and proper pore size distribution was achieved at 700 °C. Benefiting from the stable electrochemical interface and the optimized porous structure, the as-obtained HAC-700 exhibit significantly suppressed self-discharge and leak current, with improved cycling stability, which is attributable to the stabilization of electrochemical interface between carbon surface and electrolyte. The result provides insights for rational design of surface chemistry for high-performance carbon electrode towards advanced energy storage.Siting Yuan Xianhong Huang Hao Wang Lijing Xie Jiayao Cheng Qingqiang Kong Guohua Sun Cheng-Meng Chen 2020Journal of Energy Chemistry2020,29,12:16
3Identification of a Ubiquitin-Binding Structure in the S-Locus F-Box Protein Controlling S-RNase-Based Self-Incompatibility显示文摘在 flowering 植物,自我障碍(SI ) 作为重要 intraspecific 服务繁殖障碍支持快。在从 Solanaceae, Plantaginaceae 和 Rosaceae, S-RNase 和 SLF (S 地点 F 盒子) 蛋白质的种类被显示了分别地控制 SI 的女、男的特性。然而,很少除了它的保存 F 盒子领域对 SLF 蛋白质的结构特征被知道。这里,我们证明 SLF C 终端区域拥有结构在 SLF 蛋白质家庭之中保存了的一个新奇 ubiquitin 有约束力的领域(UBD ) 。由使用 Nicotiana benthamiana 的一个 ex vivo 系统,我们发现 UBD 调停由 ubiquitin–proteasome 小径的 SLF 蛋白质周转。而且,我们检测了 SLF 蛋白质直接涉及 S-RNase 降级。一起拿,我们的结果提供新奇卓见进 SLF 结构并且在 S-RNase-based 自我障碍加亮 SLF 蛋白质稳定性和降级的一个潜在的角色。Guang Chen BinZhang Lijing Liu Qun Li Yu'e Zhang Qi Xie Yongbiao Xue 2012Journal of Genetics and Genomics2012,39,2:7
4Porous NiCo_2O_4 nanowires supported on carbon cloth for flexible asymmetric supercapacitor with high energy density显示文摘Recently, binary metal oxides have been considerably researched for energy storage since it can provide higher electrical conductivity and electrochemical activity than single components. Besides, rational arrays structure design can effectively enhance the utilization of active material. In this article, we synthesis a porous NiCo_2O_4 nanowires arrays, which were intimate contact with flexible carbon cloth(CC)by a facile hydrothermal reaction and calcination treatment. The rational array structures of NiCo_2O_4 facilitate the diffusion of electrolyte and effectively increase the utilization of active material. The asobtained NiCo_2O_4@CC electrode exhibits a high capacitance of 1183 mF cm^(-2) and an outstanding capacitance retention of 90.4% after 3000 cycles. Furthermore, a flexible asymmetric supercapacitor(ASC)using NiCo_2O_4@CC as positive electrode and activated carbon cloth(ACC) as negative electrode was fabricated, which delivers a large capacitance of 750 mF cm^(-2)(12.5 F cm^(-3)), a high energy density of 0.24 mWh cm^(-2)(3.91 mWh cm^(-3)), as well as excellent cycle stability under different bending states.These remarkable results suggest that as-assembled NiCo_2O_4@CC//ACC ASC is a promising candidate in flexible energy storage applications.Huifang Zhang Dengji Xiao Qian Li Yuanyuan Ma Shuxia Yuan Lijing Xie Chengmeng Chen Chunxiang Lu 2018Journal of Energy Chemistry2018,27,1:6
5Three-dimensional paper-like graphene framework with highly orientated laminar structure as binder-free supercapacitor electrode显示文摘A free-standing paper-like three-dimensional graphene framework(3DGF) with orientated laminar structure and interconnected macropores, was obtained by the hard template-directed ordered assembly. As the sacrificial templates, polystyrene(PS) latex spheres were assembled with graphene oxide(GO) to build up a sandwich type composite film, followed by heat removal of which with a simultaneous reduction of GO. The 3DGF exhibited high specific surface area of 402.5 m2/g, controllable pores and mechanical flexibility, which was employed as the binder-free supercapacitor electrode and shows high specific gravimetric capacitance of 95 F/g at 0.5 A/g, with enhanced rate capability in 3 electrode KOH system.Yidan Gao Yaoyao Zhang Yong Zhang Lijing Xie Xiaoming Li Fangyuan Su Xianxian Wei Zhiwei Xu Chengmeng Chen Rong Cai 2016Journal of Energy Chemistry2016,25,1:5
6Cellulose nanofiber separator for suppressing shuttle effect and Li dendrite formation in lithium-sulfur batteries显示文摘Lithium-sulfur battery(LSB) has high energy density but is limited by the polysulfides shuttle and dendrite growth during cycling. Herein, a free-standing cellulose nanofiber(CNF) separator is designed and fabricated in isopropanol/water suspension through vacuum filtration progress. CNFs with abundant polar oxygen-containing functional groups can chemically immobilize the polysulfides, and suppress the formation of the dendrites by controlling the surface morphology of the SEI on lithium metal in LSB. The isopropanol content in a suspension can fine-tune the pore structure of the membrane to achieve optimal electrochemical performance. The prepared separator displays integrated advantages of an ultrathin thickness(19 μm), lightweight(0.87 mg cm^(-2)), extremely high porosity(98.05%), and decent electrolyte affinity. As a result, the discharge capacity of the LSB with CNF separator at the first and 100 th cycle is 1.4 and 1.3 times that of PP separator, respectively. Our research provides an environmentalfriendly and facile strategy for the preparation of multifunctional separators for LSBs.Jingxue Li Liqin Dai Zhefan Wang Hao Wang Lijing Xie Jingpeng Chen Chong Yan Hong Yuan Hongliang Wang Chengmeng Chen 2022Journal of Energy Chemistry2022,31,4:4
7Influence of co-solvent hydroxyl group number on properties of water-based conductive carbon pastes显示文摘Chengjie Hua Xiaoming Li Lijuan Shen Hong Lei Xiaoqian Guo Zhuo Liu Qingqiang Kong Lijing Xie cheng-Meng Chen 2017Particuology2017,15,4:3
8Unfolded protein response activation compensates endoplasmic reticulum-associated degradation deficiency in Arabidopsis显示文摘Abiotic stresses often disrupt protein folding and induce endoplasmic reticulum(ER) stress. There is a sophisticated ER quality control(ERQC) system to mitigate the effects of malfunctioning proteins and maintain ER homeostasis. The accumulation of misfolded proteins in the ER activates the unfolded protein response(UPR) to enhance ER protein folding and the degradation of misfolded proteins mediate by ERassociated degradation(ERAD). That ERQC reduces abiotic stress damage has been well studied in mammals and yeast. However, in plants, both ERAD and UPR have been studied separately and found to be critical for plant abiotic stress tolerance. In this study, we discovered thatUPR-associated transcription factors Atb ZIP17, AtbZIP28 and AtbZIP60 responded to tunicamycin(TM) and Na Cl induced ER stress and subsequently enhanced Arabidopsis thaliana abiotic stress tolerance. They regulated the expression level of ER chaperones and the HRD1-complex components. Moreover, overexpression of Atb ZIP17,Atb ZIP28 and Atb ZIP60 could restore stress tolerance via ERAD in the HRD1-complex mutant hrd3a-2, which suggested that UPR and ERAD have an interactive mechanism in Arabidopsis.Qingliang Li Hai Wei Lijing Liu Xiaoyuan Yang Xiansheng Zhang Qi Xie 2017Journal of Integrative Plant Biology2017,59,7:3
9UBC32 Mediated Oxidative Tolerance in Arabidopsis显示文摘Extreme environments such as salt stress often increase the reactive oxygen species(ROS) levels(Abogadallah,2010; Miller et al.,2010),which cause protein denaturation and damage(Kelsen et al.,2008).In eukaryotic cells,the endoplasmic reticulum(ER) lumen is highly oxidative environment, which help newly synthesized proteins form intermolecular or intramolecular disulfide bonds between their cysteine residues. However,the ROS must be regulated according to the folding load to protect the cell from the consequences of oxidative folding.One way to control ROS level is to increase the expression level of ROS scavenger(Molteni et al.,2004); another way is to activate unfolded protein response(UPR),Feng Cui Lijing Liu Qingliang Li Chengwei Yang Qi Xie 2012Journal of Genetics and Genomics2012,39,8:2
10Mesoscale fabrication of a complex surface for integral impeller blades显示文摘Xibin WANG Tianfeng ZHOU Lijing XIE Li JIAO Zhibing LIU Zhiqiang LIANG Pei YAN 2017Frontiers of Mechanical Engineering2017,12,1:2
11Modeling high-speed cutting of SiC_(p)/Al composites using a semi-phenomenologically based damage model显示文摘In this paper,we attempts to investigate cutting mechanisms in high-speed cutting of Al6061/Si C_(p)/15p composites using a semi-phenomenologically based damage model in the equivalent homogeneous material(EHM)framework.By combining macroscale EHM modeling and underlying microscale physical mechanisms,a feasible semi-phenomenological plastic model is proposed for prediction of cutting forces and chip morphology during high-speed turning Al6061/Si C_(p)/15p composites.This model incorporates the modified Weibull weakest-link effect to represent the strain-based damage evolution in large deformations.This proposed semi-phenomenological constitutive model is implemented by compiling material subroutines into cutting finite element(FE)codes.The effects of the critical shear stresses on chip formation that depend on the toolchip frictional coefficient are accounted for in the cutting FE model.The chip formation mechanism affecting material removal behaviors during high-speed turning is further investigated.The capabilities of the proposed constitutive model are evaluated by comparing cutting forces and chip morphologies between experiments and simulations at different cutting speeds associated with strain rates.The EHM-based and microstructure-based models are further compared in both computational efficiency and accuracy.The simulation results show that the developed semiphenomenological constitutive formalism and cutting model are promising and efficient tools for further investigation of dynamic mechanical and cutting behaviors of particle-reinforced composites with different volume fraction and particle size.Junfeng XIANG Lijing XIE Feinong GAO 2021Chinese Journal of Aeronautics2021,34,8:2
12Study on the adaptability of thick film diamond tool to cutting composites显示文摘Quan Yanmin Yu Qixun Xie Lijing 2002International Journal of Machine Tools and Manufacture2002,42,:1
13Rhizoma Paridis ethanol extract selectively inhibits the proliferation of HUVECs comparing to Lovo cells and shows anti-angiogenesis effects in a mouse model显示文摘Xiaoping Qian Lijing Zhu Jing Hu Min Li Li Xie Lifeng Wang Lixia Yu Baorui Liu 2012Journal of Ethnopharmacology2012,,1:1
14Combined DFT and experiment:Stabilizing the electrochemical interfaces via boron Lewis acids显示文摘The incorporation of boron into carbon material can significantly enhance its capacity performances.However,the origin of the promotion effect of boron doping on electrochemical performances is still unclear,in part due to the inadequate exposure of boron configurations resulting from the complexity of traditional carbon materials.To overcome this issue,herein,a series of boron-doped graphene with highly-exposed boron configurations are prepared by tuning annealing temperature.Then the correlation between boron configurations and the electrochemical performances is investigated.The combination of density-functional theory(DFT)computation and NH3-TPD/Py-FTIR indicates that the BCO_(2)configuration formed on the surface of graphene is easier to accept lone-pair electrons than BC_(2)O and BC_(3)configurations due to the stronger Lewis acidity.Such an electronic structure can effectively reduce the number of unstable electron donors and stabilize the electrochemical interface,which is proved by NMR,and critical for improving the electrochemical performances.Further experiments confirm that the optimized BG800 with the largest amount of BCO_(2)configuration presents ultralow leak current,improved cyclic stability,and better rate performance in SBPBF4/PC.This work would provide an insight into the design of high-performance boron-doped carbon materials towards energy storage.Zhe-Fan Wang Zonglin Yi Aziz Ahmad Lijing Xie Jing-Peng Chen Qingqiang Kong Fangyuan Su Da-Wei Wang Cheng-Meng Chen 2021Journal of Energy Chemistry2021,30,8:1
15Study on the adaptability of thick film diamond tool to cutting composites 显示文摘Quan Yanmin Yu Qixun Xie Lijing 2002International Journal of Machine Tools and Manufacture2002,42,4:1
16International Trade of Agricultural Products in the Context of 'B&R' Initiative显示文摘At present,China's agricultural product trade is facing the development dilemma. The trade deficit is expanding,market and product structure is irrational,and the Chinese agriculture products often encounter trade barriers. ' B&R' initiative provides a rare opportunity for the development of agricultural products in China. It is necessary to seize this opportunity to change idea and innovate upon mechanism so as to increase the added value of exported agricultural products through various channels. There is also a need to develop electronic commerce,and make full use of interconnectivity and trade facilitation in ' B&R' initiative to develop the international trade of agricultural products.Lijing WU Shuhua XIE 2016Asian Agricultural Research2016,8,3:1
17Preparation and electrochemical performance of the layered cobalt oxide (Co 3 O 4 ) as supercapacitor electrode material显示文摘Lijing Xie Kaixi Li Guohua Sun Zhongai Hu Chunxiang Lv Jianlong Wang Changming Zhang 2013Journal of Solid State Electrochemistry2013,,1:1
18Co x Ni 1? x double hydroxide nanoparticles with ultrahigh specific capacitances as supercapacitor electrode materials显示文摘Lijing Xie Zhongai Hu Chunxiang Lv Guohua Sun Jianlong Wang Yanqiu Li Hongwei He Jian Wang Kaixi Li 2012Electrochimica Acta2012,,:1
19Design of core-shell nickel oxide/silicon carbide whiskers towards excellent microwave absorption property显示文摘Toward the increasingly serious problem of electromagnetic wave pollution,the development of absorbing material with the properties of the light,thin,wide,strong,and multiple applications scenarios is still a huge challenge.Herein,the core-shell nickel oxide/silicon carbide whiskers(NiO/SiCw)with variational NiO morphologies(tulle-,flower,and rod-like)were designed and fabricated via a facile prehydrothermal method and post-annealing process.For the NiO shell morphology,it can effectively be controlled by the proportion of Ni(NO_(3))_(2)·6H_(2)O,NH_(4)Cl,and CO(NH_(2))_(2).The structure of NiO/SiCw samples was investigated by XRD,SEM,XPS,TEM,and N2 absorption-desorption.Compared to other morphologies of NiO,the flower-like NiO/SiCw possess a porous structure and large surface area that can benefit from the multiple reflections and attenuation of the microwave.As an absorber,the composite with the flower-like NiO/SiCw filler loading of 50%manifests a superior microwave attenuation capability due to its special porous structure,good impedance matching,and large dielectric loss induced from heterojunction interfacial polarization.The minimum reflection loss of flower-like NiO/SiCw is up to-56.8 dB with a thickness of 1.9 mm,and the maximum effective absorption bandwidth(EAB)reaches 5.17 GHz.The as-prepared flower-like NiO/SiCw with strong absorption,thin thickness,and width EAB can meet the potential requirements for microwave absorption materials under oxidation environments.Jingpeng Chen Ge Song Zhuo Liu Lijing Xie Shoushun Zhang Chengmeng Chen 2021Chinese Journal of Chemical Engineering2021,34,9:0
20In-situ conversion of Ni2P/rGO from heterogeneous self-assembled NiO/rGO precursor with boosted pseudocapacitive performance显示文摘Two-dimensional(2 D)heterostructural Ni2 P/rGO is successfully fabricated by in-situ phosphating selfassembled NiO/rGO composites and shows the enhanced electrochemical performances.In this design,the rGO sheets effectively reduce the lattice strain created during the phase transformation from NiO to Ni2 P,thereby maintaining ultrathin nanostructures of Ni2 P.The resulting Ni2 P/rGO layered heterostructure gives the composite plenty of pores or channels,good electrical conductivity and well-exposed active sites.Density functional theory(DFT)calculation further demonstrates that the Fermi energy level and electron localize of near Ni atoms in Ni2 P is higher than that of NiO,which endow Ni2 P with faster and more reversible redox reactivity in dynamic.Benefiting from their structural and compositional merits,the as-synthesized Ni2 P/rGO exhibits high specific discharge capacity and excellent rate performance.Furthermore,a hybrid supercapacitor built with Ni2 P/rGO and activated carbon shows a high specific energy of 38.6 Wh/kg at specific power of 375 W/kg.Ge Song Zonglin Yi Lijing Xie Zhihong Bi Qian Li Jingpeng Chen Qingqiang Kong Chengmeng Chen 2020Chinese Chemical Letters2020,31,6:0
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