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| 1 | Effect of calcining temperature and time on the characteristics of Sb-doped SnO_2 nanoparticles synthesized by the sol-gel method显示文摘Spherical Sb-doped SnO2 (ATO) nanoparticles were synthesized by the sol-gel route, employing SnCl4·5H2O and SbCl3 as precursors in an ethanol solution. The influences of the calcining temperature and calcining time on the crystallite size, crystallinity, lattice parameters, lattice distortion ratio and the resistivity of the ATO nanoparticles were synthetically investigated. The results suggested that the ATO nanoparticles were crystallized in a tetragonal cassiterite structure of SnO2 with a highly (110)- plane-preferred orientation. The calcining temperature had a dominating effect on the crystallite size, crystallinity, lattice distortion ratios and resistivity of the ATO. As the calcining temperature increased, the average crystallite size increased, the crystallinity was promoted accompanied by a decrease in the lattice distortion ratio and a corresponding decrease in the resistivity of the ATO. X-ray diffraction (XRD) and Fourier transform infrared spectrophotometer (FTIR) analysis revealed that Sb ions could not entirely supplant the Sn ions in the SnO2 lattice for a calcining time of less than 0.5 h, even at a calcining temper- ature of 1000°C. The ATO nanoparticles calcined at 1000°C for 3.0h possessed the lowest resistivity of 10.18Ωcm. | Xiaohua Zhong Baoping Yang Xiaoliang Zhang Junhong Jia Gewen Yi | 2012 | Particuology2012,10,3: | 8 |
| 2 | Insulating materials for realising carbon neutrality:Opportunities,remaining issues and challenges显示文摘The 2050 carbon-neutral vision spawns a novel energy structure revolution,and the construction of the future energy structure is based on equipment innovation.Insulating material,as the core of electrical power equipment and electrified transportation asset,faces unprecedented challenges and opportunities.The goal of carbon neutral and the urgent need for innovation in electric power equipment and electrification assets are first discussed.The engineering challenges constrained by the insulation system in future electric power equipment/devices and electrified transportation assets are investigated.Insulating materials,including intelligent insulating material,high thermal conductivity insulating material,high energy storage density insulating material,extreme environment resistant insulating material,and environmental-friendly insulating material,are cat-egorised with their scientific issues,opportunities and challenges under the goal of carbon neutrality being discussed.In the context of carbon neutrality,not only improves the understanding of the insulation problems from a macro level,that is,electrical power equipment and electrified transportation asset,but also offers opportunities,remaining issues and challenges from the insulating material level.It is hoped that this paper en-visions the challenges regarding design and reliability of insulations in electrical equipment and electric vehicles in the context of policies towards carbon neutrality rules.The authors also hope that this paper can be helpful in future development and research of novel insulating materials,which promote the realisation of the carbon-neutral vision. | Chuanyang Li Yang Yang Guoqiang Xu Yao Zhou Mengshuo Jia Shaolong Zhong Yu Gao Chanyeop Park Qiang Liu Yalin Wang Shakeel Akram Xiaoliang Zeng Yi Li Fangwei Liang Bin Cui Junpeng Fang Lingling Tang Yulin Zeng Xingtao Hu Jiachen Gao Giovanni Mazzanti Jinliang He Jianxiao Wang Davide Fabiani Gilbert Teyssedre Yang Cao Feipeng Wang Yunlong Zi | 2022 | High Voltage2022,7,4: | 4 |
| 3 | The decolorization of Acid Orange II in non-homogeneous Fenton reaction catalyzed by natural vanadium–titanium magnetite显示文摘 | Xiaoliang Liang Yuanhong Zhong Sanyuan Zhu Jianxi Zhu Peng Yuan Hongping He Jing Zhang | 2010 | Journal of Hazardous Materials2010,,1: | 2 |
| 4 | Improvement of extracellular production of a thermophilic subtilase expressed in Escherichia coli by random mutagenesis of its N-terminal propeptide显示文摘 | Nan Fang Chuan-Qi Zhong Xiaoliang Liang Xiao-Feng Tang Bing Tang | 2010 | Applied Microbiology and Biotechnology2010,,5: | 1 |
| 5 | Thedecolorization of Acid Orange II in non - homogeneous Fenton reactioncatalyzed by natural vanadium - titanium magnetite 显示文摘 | Xiaoliang Liang Yuanhong Zhong Sanyuan Zhua | 2010 | Journal ofHazardous Materials2010,181,: | 1 |
| 6 | The effect of transition metal substitution on the catalytic activity of magnetite in heterogeneous Fenton reaction: In interfacial view显示文摘 | Xiaoliang Liang Zisen He Yuanhong Zhong Wei Tan Hongping He Peng Yuan Jianxi Zhu Jing Zhang | 2013 | Colloids and Surfaces A: Physicochemical and Engineering Aspects2013,,: | 1 |
| 7 | The application of chromium substituted magnetite as heterogeneous Fenton catalyst for the degradation of aqueous cationic and anionic dyes显示文摘 | Xiaoliang Liang Yuanhong Zhong Hongping He Peng Yuan Jianxi Zhu Sanyuan Zhu Zheng Jiang | 2012 | Chemical Engineering Journal2012,,: | 1 |
| 8 | The remarkable effect of vanadium doping on the adsorption and catalytic activity of magnetite in the decolorization of methylene blue显示文摘 | Xiaoliang Liang Sanyuan Zhu Yuanhong Zhong Jianxi Zhu Peng Yuan Hongping He Jing Zhang | 2010 | Applied Catalysis B Environmental2010,,1: | 1 |
| 9 | The decolorization of acid orange II in non-homogeneous Fen- ton reaction catalyzed by natural vanadium-titanium magnetite 显示文摘 | LIANG Xiaoliang ZHONG Yuanhong ZHU Sanyuan | 2010 | Journal of Hazardous Materials2010,181,: | 1 |
| 10 | Constraint of Isomorphous Substitution in Magnetite on Its Catalytic Activity in Heterogeneous Fenton Reaction显示文摘In nature, iron cations in magnetite are usually isomorphically substituted by divalent (Co, Ni, Zn, Cu, Mn, etc.), trivalent (Al, V, Cr, etc.) and tetravalent (Ti) cations while maintaining the spinel structure. Some of the substituting cations, e.g. Cr3+, V3+ and Mn2+, improve the catalytic activity of magnetite in heterogeneous Fenton reaction through the enhancement of hydroxyl radical OH production and the pollutant adsorption. | LIANG Xiaoliang ZHONG Yuanhong HE Zisen TAN Wei HE Hongping YUAN Peng ZHU Jianxi | 2013 | 矿物学报2013,33,S1: | 0 |
| 11 | Prelithiation strategies for silicon-based anode in high energy density lithium-ion battery显示文摘Green energy storage devices play vital roles in reducing fossil fuel emissions and achieving carbon neutrality by 2050.Growing markets for portable electronics and electric vehicles create tremendous demand for advanced lithium-ion batteries(LIBs)with high power and energy density,and novel electrode material with high capacity and energy density is one of the keys to next-generation LIBs.Silicon-based materials,with high specific capacity,abundant natural resources,high-level safety and environmental friendliness,are quite promising alternative anode materials.However,significant volume expansion and redundant side reactions with electrolytes lead to active lithium loss and decreased coulombic efficiency(CE)of silicon-based material,which hinders the commercial application of silicon-based anode.Prelithiation,preembedding extra lithium ions in the electrodes,is a promising approach to replenish the lithium loss during cycling.Recent progress on prelithiation strategies for silicon-based anode,including electrochemical method,chemical method,direct contact method,and active material method,and their practical potentials are reviewed and prospected here.The development of advanced Si-based material and prelithiation technologies is expected to provide promising approaches for the large-scale application of silicon-based materials. | Tianqi Jia Geng Zhong Yao Lv Nanrui Li Yanru Liu Xiaoliang Yu Jinshuo Zou Zhen Chen Lele Peng Feiyu Kang Yidan Cao | 2023 | Green Energy & Environment2023,8,5: | 0 |
| 12 | Atom substitution of the solid-state electrolyte Li_(10)GeP_(2)S_(12)for stabilized all-solid-state lithium metal batteries显示文摘Solid-state electrolyte Li_(10)GeP_(2)S_(12)(LGPS)has a high lithium ion conductivity of 12 mS cm^(-1)at room temperature,but its inferior chemical stability against lithium metal anode impedes its practical application.Among all solutions,Ge atom substitution of the solid-state electrolyte LGPS stands out as the most promising solution to this interface problem.A systematic screening framework for Ge atom substitution including ionic conductivity,thermodynamic stability,electronic and mechanical properties is utilized to solve it.For fast screening,an enhanced model Dop Net FC using chemical formulas for the dataset is adopted to predict ionic conductivity.Finally,Li_(10)SrP_(2)S_(12)(LSrPS)is screened out,which has high lithium ion conductivity(12.58 mS cm^(-1)).In addition,an enhanced migration of lithium ion across the LSr PS/Li interface is found.Meanwhile,compared to the LGPS/Li interface,LSrPS/Li interface exhibits a larger Schottky barrier(0.134 eV),smaller electron transfer region(3.103?),and enhanced ability to block additional electrons,all of which contribute to the stabilized interface.The applied theoretical atom substitution screening framework with the aid of machine learning can be extended to rapid determination of modified specific material schemes. | Zijing Wan Xiaozhen Chen Ziqi Zhou Xiaoliang Zhong Xiaobing Luo Dongwei Xu | 2024 | Journal of Energy Chemistry2024,88,1: | 0 |