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| 1 | 2020 roadmap on two-dimensional materials for energy storage and conversion显示文摘Energy storage and conversion have attained significant intere st owing to its important applications that reduce CO2 emission through employing green energy.Some promising technologies are included metalair batteries,metal-sulfur batteries,metal-ion batteries,electrochemical capacitors,etc.Here,metal elements are involved with lithium,sodium,and magnesium.For these devices,electrode materials are of importance to obtain high performance.Two-dimensional(2 D) materials are a large kind of layered structured materials with promising future as energy storage materials,which include graphene,black phosporu s,MXenes,covalent organic frameworks(COFs),2 D oxides,2 D chalcogenides,and others.Great progress has been achieved to go ahead for 2 D materials in energy storage and conversion.More researchers will join in this research field.Under the background,it has motivated us to contribute with a roadmap on ’two-dimensional materials for energy storage and conversion. | Baolin Xu Shihan Qi Mengmeng Jin Xiaoyi Cai Linfei Lai Zhouting Sun Xiaogang Han Zifeng Lin Hui Shao Peng Peng Zhonghua Xiang Johan E.ten Elshof Rou Tan Chen Liu Zhaoxi Zhang Xiaochuan Duan Jianmin Ma | 2019 | Chinese Chemical Letters2019,30,12: | 2 |
| 2 | Numb regulates vesicular docking for homotypic fusion of early endosomes via membrane recruitment of Monlb显示文摘 | Ximing Shao Yi Liu Qian Yu Zhihao Ding Wenyu Qian Lei Zhang Jianchao Zhang Nan Jiang Linfei Gui Zhiheng Xu Yang Hong Yifan Ma Yanjie Wei Xiaoqing Liu Changan Jiang Minyan Zhu Hongchang Li Huashun Li | 2016 | Cell Research2016,26,5: | 1 |
| 3 | Multi-oriented moiré superstructures of graphene on Ir(111): experimental observations and theoretical models显示文摘 | Lei Meng Rongting Wu Lizhi Zhang Linfei Li Shixuan Du Yeliang Wang H-J Gao | 2012 | Journal of Physics: Condensed Matter2012,,: | 1 |
| 4 | High-pressure investigations on the isostructural phase transition and metallization in realgar with diamond anvil cells显示文摘The high-pressure structural,vibrational and electrical properties for realgar were investigated by in-situ Raman scattering and electrical conductivity experiments combined with first-principle calculations up to~30.8 GPa.It was verified that realgar underwent an isostructural phase transition at~6.3 GPa and a metallization at a higher pressure of~23.5 GPa.The isostructural phase transition was well evidenced by the obvious variations of Raman peaks,electrical conductivity,crystal parameters and the As–S bond length.The phase transition of metallization was in closely associated with the closure of bandgap rather than caused by the structural phase transition.And furthermore,the metallic realgar exhibited a relatively low compressibility with the unit cell volume V_(0)=718.1.4Å^(3)and bulk modulus B_(0)=36.1 GPa. | Linfei Yang Lidong Dai Heping Li Haiying Hu Meiling Hong Xinyu Zhang Pengfei Liu | 2021 | Geoscience Frontiers2021,12,2: | 1 |
| 5 | Phase Characteristic Analysis of Continuous Depth Air-Gun Source Wavelet显示文摘Air guns are important sources for marine seismic exploration. Far-field wavelet of air gun arrays, as a necessary parameter for pre-stack processing and source models, plays an important role during marine seismic data processing and interpretation. When an air gun fires, it generates a series of air bubbles. Similar to onshore seismic exploration, the water forms a plastic fluid near the bubble; the farther the air gun is located from the measurement, the more steady and more accurately represented the wavelet will be. In practice, hydrophones should be placed more than 100 m from the air gun; however, traditional seismic cables cannot meet this requirement. On the other hand, vertical cables provide a viable solution to this problem. This study uses a vertical cable to receive wavelets from 38 air guns and data are collected offshore Southeast Qiong, where the water depth is over 1000 m. In this study, the wavelets measured using this technique coincide very well with the simulated wavelets and can therefore represent the real shape of the wavelets. This experiment fills a technology gap in China. | XING Lei LIU Huaishan ZHENG Xilai LIU Xueqin ZHANG Jin WANG Linfei ZOU Zhihui XU Yiming | 2016 | Journal of Ocean University of China2016,15,5: | 1 |
| 6 | Novel CeO2 yolk-shell structures loaded with tiny Au nanoparti- cles for superior catalytic reduction of p-nitrophenol 显示文摘 | Fan Congmin Zhang Linfei Wang Shasha | 2012 | Nanoscale2012,4,21: | 1 |
| 7 | Construction of 2D Atomic Crystals on Transition Metal Surfaces: Graphene, Silicene, and Hafnene显示文摘 | Yi Pan Lizhi Zhang Li Huang Linfei Li Lei Meng Min Gao Qing Huan Xiao Lin Yeliang Wang Shixuan Du Hans‐Joachim Freund Hong‐Jun Gao | 2014 | Small2014,,: | 1 |
| 8 | Mixed-solvothermal synthesis of CdS micro/nanostructures and their optical properties 显示文摘 | Zhong Shengliang Zhang Linfei Huang Zhenzhong | 2011 | Appl Surf Sci2011,257,: | 1 |
| 9 | Comprehensive safety evaluation method of surrounding rock during underground cavern construction显示文摘The deformation instability of surrounding rock and the collapse of rock blocks are two common failure modes observed during the construction of underground caverns.Therefore,a comprehensive safety evaluation method(CSEM)of surrounding rock for application during underground cavern construction is presented in this paper.The method can be used to evaluate the deformation stability of surrounding rock and predict the collapse of rock blocks,rapidly.First,a deformation stability prediction and evaluation method(DSPEM)for rock mass is established.It combines the safety evaluation method based on a deformation statistical analysis and an inverse deformation prediction method using measured deformation data of surrounding rock.This approach possesses the unique characteristics of complementary and mutual verification.In addition,a comprehensive early-warning index system(CWIS)for assessing the deformation stability of surrounding rock is presented.It consists of three types of warning indicators and three levels of warning values.The earlywarning values can be adjusted reasonably by the prediction correction method according to the measured displacements.For the collapse of rock blocks controlled by structural surfaces,a rapid prediction method of rock block collapse(RPMBC)based on the block theory is then presented.Finally,combining the DSPEM,RPMBC,and CWIS,the CSEM of surrounding rock for assessing the safety of cavern construction is established.It can provide technical support for decision making on the safety of surrounding rock during the construction of underground caverns. | Qingwen Ren Lei Xu Aixi Zhu Mingzhang Shan Linfei Zhang Jiafeng Gu Lei Shen | 2021 | Underground Space2021,6,1: | 0 |
| 10 | Safety Evaluation of Concrete Structures Based on a Novel Energy Criterion显示文摘In this article,the post-peak softening stage of the constitutive relation and the elastic stiffness degradation of concrete are investigated,and a highly reasonable constitutive relation curve is proposed.At the material level,the energy change in the concrete failure process is studied based on the different stress-strain curves of concrete under uniaxial tension and compression.The concrete failure criterion based on elastic strain energy density is deemed suitable and consistent with the experimental phenomena.The hysteresis phenomenon(lags behind the peak strength)is also discussed.At the structure level,the strength reduction method is employed for the stability analysis,the energy change in the failure process of the Long Xi-Kou Dam is examined,and the results show that the dam failure criterion based on elastic strain energy shows a greater significance in practical applications compared with other conventional structural failure criteria in engineering.This criterion is objective and can avoid subjective arbitrariness. | Qiang Tong Qingwen Ren Lei Shen Linfei Zhang Yin Yang | 2018 | Computer Modeling in Engineering & Sciences2018,,1: | 0 |
| 11 | Knockdown of Nav1_5 inhibits cell proliferation,migration and invasion via Wnt/β-catenin signaling pathway in oral squamous cell carcinoma显示文摘Oral squamous cell carcinoma(OSCC)is a common type of malignant oral cancer that has a high recurrence rate.Voltage-gated sodium channel Nav1.5 was reported to be highly up-regulated in various types of cancers.However,the regulatory mechanism of Nav1.5 in cancers including OSCC still remains elusive.In this study,Nav1.5 was found to be highly expressed in OSCC tissues and cells.Through the analysis of clinical characteristics of patients,we found that the expression level of Nav1.5 was closely related to neutrophil-to-lymphocyte ratio,platelet-to-lymphocyte ratio,tumor-node-metastasis stage,and lymph node metastasis.Moreover,we found that Nav1.5 mainly located on the cell membrane as well as cytoplasm and knockdown of Nav1.5 promoted cell apoptosis and decreased proliferation in OSCC.Transwell assay results showed that knockdown of Nav1.5 effectively suppressed the migration and invasion in OSCC.In addition,knockdown of Nav1.5 was found to inhibit the protein and mRNA expression levels ofβ-catenin,cyclin D1,and C-Myc in the Wnt/βcatenin signaling pathway.In summary,these results indicated that Nav1.5 may be involved in the progression of OSCC through the Wnt/βcatenin signaling pathway. | Xiaoli Xu Yongzheng Dai Linfei Feng Hongli Zhang Yukun Hu Le Xu Xinwei Zhu Yong Jiang | 2020 | Acta Biochimica et Biophysica Sinica2020,52,5: | 0 |
| 12 | Advances in probing single biomolecules: From DNA bases to glycans显示文摘Imaging biomolecules in real space is crucial for gaining a comprehensive understanding of the properties and functions of biological systems at the most fundamental level.Among the various imaging techniques available for biomolecules and their assembled nanostructures,scanning probe microscopy(SPM)provides a powerful and nondestructive imaging option.SPM is unique in visualizing intrinsically disordered biomolecules at the nanometer scale(e.g.,glycans).This review highlights recent achievements in studying biomolecules using SPM technique,focusing on DNA bases,amino acids,proteins,and glycans.The atomic-level analysis of biomolecules made possible by SPM allows for a more accurate definition of the local structure–property relationship.High-resolution SPM imaging of single biomolecules offers a new way to study basic processes of life at the molecular level. | Baofei Hou Teng Zhang Huixia Yang Xu Han Liwei Liu Linfei Li Cesare Grazioli Xu Wu Nan Jiang Yeliang Wang | 2023 | Interdisciplinary Materials2023,2,4: | 0 |
| 13 | A laser synthesis of vanadium oxide bonded graphene for high-rate supercapacitors显示文摘Graphene is a type of promising electrode material for high-energy and high-power density supercapacitors,but its electrochemical performance is greatly limited by the restacking problem.In this work,we reported a facile approach to synthesis graphene with chemically bonded vanadium oxide(VOx)nanoparticles and demonstrated that chemically-bonded VOxnanoparticles can effectively prevent the graphene sheets from restacking and hence improve the electrochemical performance.The capacitance of VOxbonded graphene increases to 272 F/g compared to 183 F/g of pristine graphene in 1 M H3PO4 aqueous electrolyte at 2 A/g.The VOx-bonded graphene also showed improved rate capability in both H3PO4 and ionic liquid electrolytes.The capacitance retention increases to 54.5%from 28.5%at 100 A/g(compare to2 A/g)in H3PO4 and increases to 65.1%from 46.3%at 2 A/g(compare to 0.2 A/g)in neat ionic liquid.A high energy density of 84.4 Wh/kg is obtained within the voltage window of 4 V in ionic liquid.Even at a high-power density of 1000 W/kg,the VOx-bonded graphene shows a high energy density of 47.3 Wh/kg. | Jun Tang Linfei Zhang Xiongwei Zhong Xinghui Wang Feng Pan Baomin Xu | 2020 | Journal of Energy Chemistry2020,29,10: | 0 |