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Sandwich-type composited solid polymer electrolytes to strengthen the interfacial ionic transportation and bulk conductivity for all-solid-state lithium batteries from room temperature to 120℃
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作者 Jiewen Tan Zhen Wang +7 位作者 Jiawu Cui Zhanhui Jia Wensheng Tian Chao Wu Chengxin Peng Chengyong Shu Kang Yang Wei Tang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期288-295,I0007,共9页
The insurmountable charge transfer impedance at the Li metal/solid polymer electrolytes(SPEs)interface at room temperature as well as the ascending risk of short circuits at the operating temperature higher than the m... The insurmountable charge transfer impedance at the Li metal/solid polymer electrolytes(SPEs)interface at room temperature as well as the ascending risk of short circuits at the operating temperature higher than the melting point,dominantly limits their applications in solid-state batteries(SSBs).Although the inorganic filler such as CeO_(2)nanoparticle content of composite solid polymer electrolytes(CSPEs)can significantly reduce the enormous charge transfer impedance at the Li metal/SPEs interface,we found that the required content of CeO_(2)nanoparticles in SPEs varies for achieving a decent interfacial charge transfer impedance and the bulk ionic conductivity in CSPEs.In this regard,a sandwich-type composited solid polymer electrolyte with a 10%CeO_(2)CSPEs interlayer sandwiched between two 50%CeO_(2)CSPEs thin layers(sandwiched CSPEs)is constructed to simultaneously achieve low charge transfer impedance and superior ionic conductivity at 30℃.The sandwiched CSPEs allow for stable cycling of Li plating and stripping for 1000 h with 129 mV polarized voltage at 0.1 mA cm^(-2)and 30℃.In addition,the LiFePO_(4)/Sandwiched CSPEs/Li cell also exhibits exceptional cycle performance at 30℃and even elevated120℃without short circuits.Constructing multi-layered CSPEs with optimized contents of the inorganic fillers can be an efficient method for developing all solid-state PEO-based batteries with high performance at a wide range of temperatures. 展开更多
关键词 PEO-based solid electrolytes CeO_(2)nanoparticles Charge transfer impedance Sandwich-type composite electrolytes All-solid-state Li metal batteries
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Catalytic Performance of Aquathermolysis and Viscosity Reduction of Heavy Oil over a WO_(3)/ZrO_(2) Solid Acid
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作者 Ning Haolong Wu Junwen +6 位作者 Shen Zhibing Che Chang Tang Ruiyuan Liang Shengrong Zhang Juntao Jiang Haiyan Yuan Shibao 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS CSCD 2024年第3期82-92,共11页
Tungstated zirconia(WO_(3)/ZrO_(2))solid acid catalysts with different WO_(3) contents were prepared by a hydrothermal method and then used in the catalytic aquathermolysis of heavy oil from Xinjiang.The WO_(3)/ZrO_(2... Tungstated zirconia(WO_(3)/ZrO_(2))solid acid catalysts with different WO_(3) contents were prepared by a hydrothermal method and then used in the catalytic aquathermolysis of heavy oil from Xinjiang.The WO_(3)/ZrO_(2) solid acid catalyst was characterized by a range of characterization methods,including X-ray diffraction,NH3-temperature programmed desorption,and pyridine infrared spectroscopy.The WO_(3) content of the WO_(3)/ZrO_(2) catalysts had an important impact on the structure and property of the catalysts.When the WO_(3) mass fraction was 20%,it facilitated the formation of tetragonal zirconia,thereby enhancing the creation of robust acidic sites.Acidity is considered to have a strong impact on the catalytic performance of the aquathermolysis of heavy oil.When the catalyst containing 20%WO_(3) was used to catalyze the aquathermolysis of heavy oil under conditions of 14.5 MPa,340℃,and 24 h,the viscosity of heavy oil decreased from 47266 to 5398 mPa·s and the viscosity reduction rate reached 88.6%.The physicochemical properties of heavy oil before and after the aquathermolysis were analyzed using a saturates,aromatics,resins,and asphaltenes analysis,gas chromatography,elemental analysis,densimeter etc.After the aquathermolysis,the saturate and aromatic contents significantly increased from 43.3%to 48.35%and 19.47%to 21.88%,respectively,with large reductions in the content of resin and asphaltene from 28.22%to 25.06%and 5.36%to 2.03%,respectively.The sulfur and nitrogen contents,and the density of the oil were significantly decreased.These factors were likely the main reasons for promoting the viscosity reduction of heavy oil during the aquathermolysis over the WO_(3)/ZrO_(2) solid acid catalysts. 展开更多
关键词 heavy oil AQUATHERMOLYSIS viscosity reduction WO_(3)/zro_(2)solid acid catalyst
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ZrO_(2)作载体制备固体超强酸的研究进展
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作者 张楚妍 宋强 《化工技术与开发》 CAS 2024年第10期36-41,共6页
以ZrO_(2)为载体合成的固体超强酸催化剂(MoO_(3)/ZrO_(2)、WO_(3)/ZrO_(2)、SO_(4)^(2-)/ZrO_(2)等),在有机合成、石油炼制等领域具有广泛的应用。本文介绍了以ZrO_(2)为载体制备固体超强酸的方法,对固体酸的改性方法如负载金属氧化物... 以ZrO_(2)为载体合成的固体超强酸催化剂(MoO_(3)/ZrO_(2)、WO_(3)/ZrO_(2)、SO_(4)^(2-)/ZrO_(2)等),在有机合成、石油炼制等领域具有广泛的应用。本文介绍了以ZrO_(2)为载体制备固体超强酸的方法,对固体酸的改性方法如负载金属氧化物、纳米材料、稀土金属等,以及固体酸在催化反应中的应用进展进行了综述,对固体超强酸的研究方向进行了展望,以期为该领域的相关研究提供参考。 展开更多
关键词 固体超强酸 zro_(2) 载体 改性
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纳米结构Y_(2)O_(3)-Sc_(2)O_(3)-ZrO_(2)固溶体透明陶瓷的热压烧结和性能研究
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作者 李明思 霍地 《陶瓷》 CAS 2024年第7期65-69,111,共6页
笔者通过溶胶-凝胶燃烧法成功合成了Y_(2)O_(3)-Sc_(2)O_(3)-ZrO_(2)纳米粉体,研究了ZrO_(2)与热压烧结工艺对Y_(2)O_(3)-Sc_(2)O_(3)-ZrO_(2)固溶体透明陶瓷组织与性能的影响。结果表明,Y_(2)O_(3)-Sc_(2)O_(3)-ZrO_(2)粉体晶粒尺寸随Z... 笔者通过溶胶-凝胶燃烧法成功合成了Y_(2)O_(3)-Sc_(2)O_(3)-ZrO_(2)纳米粉体,研究了ZrO_(2)与热压烧结工艺对Y_(2)O_(3)-Sc_(2)O_(3)-ZrO_(2)固溶体透明陶瓷组织与性能的影响。结果表明,Y_(2)O_(3)-Sc_(2)O_(3)-ZrO_(2)粉体晶粒尺寸随ZrO_(2)掺入量的增加而减小。热压过程中,ZrO_(2)可以有效抑制晶界迁移,提高陶瓷致密度、透过率及强度和韧性。在优化的1300℃,30 min,40 MPa工艺下烧结,Y_(2)O_(3)-Sc_(2)O_(3)-10 mol%ZrO_(2)固溶体透明陶瓷的综合性能最好,其平均晶粒尺寸仅94 nm、致密度98.5%、硬度10.44 GPa,断裂韧性1.42 MPa·m^(1/2)、在3~6μm红外波段最大透过率达到72%。 展开更多
关键词 Y_(2)O_(3)-Sc_(2)O_(3)-zro_(2)固溶体 透明陶瓷 热压烧结
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In situ formation of an intimate solid-solid interface by reaction between MgH_(2) and Ti to stabilize metal hydride anode with high active material content
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作者 Yixin Chen Atsushi Inoishi +2 位作者 Shigeto Okada Hikari Sakaebe Ken Albrecht 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第8期3193-3203,共11页
MgH_(2) and TiH_(2) have been extensively studied as potential anode materials due to their high theoretical specific capacities of 2036 and 1024 mAh/g,respectively.However,the large volume changes that these compound... MgH_(2) and TiH_(2) have been extensively studied as potential anode materials due to their high theoretical specific capacities of 2036 and 1024 mAh/g,respectively.However,the large volume changes that these compounds undergo during cycling affects their performance and limits practical applications.The present work demonstrates a novel approach to limiting the volume changes of active materials.This effect is based on mechanical support from an intimate interface generated in situ via the reaction between MgH_(2) and Ti within the electrode prior to lithiation to form Mg and TiH_(2).The resulting Mg can be transformed back to MgH_(2) by reaction with LiH during delithiation.In addition,the TiH_(2) improves the reaction kinetics of MgH_(2) and enhances electrochemical performance.The intimate interface produced in this manner is found to improve the electrochemical properties of a MgH_(2)-Ti-LiH electrode.An exceptional reversible capacity of 800 mAh/g is observed even after 200 cycles with a high current density of 1 mA/cm^(2) and a high proportion of active material(90 wt.%)at an operation temperature of 120℃.This study therefore showcases a new means of improving the performance of electrodes by limiting the volume changes of active materials. 展开更多
关键词 All-solid-state battery In situ formation of solid electrolyte In situ formed intimate interface MgH_(2)anode
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Pt-SO_(4)^(2-)/ZrO_(2)-WO_(3)固体超强酸催化剂的制备及其异构化性能评价 被引量:2
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作者 张孔远 崔孟达 +2 位作者 马亮 黄仁强 刘晨光 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2023年第3期508-516,共9页
在Pt-SO_(4)^(2-)/ZrO_(2)固体超强酸中引入WO_(3)制备了Pt-SO_(4)^(2-)/ZrO_(2)-WO_(3)固体超强酸催化剂,采用N 2吸附-脱附、XRD、TPD、TPR和Py-IR等手段对所制备催化剂进行了分析表征;在5 mL连续固定床反应装置上,考察了WO_(3)含量对P... 在Pt-SO_(4)^(2-)/ZrO_(2)固体超强酸中引入WO_(3)制备了Pt-SO_(4)^(2-)/ZrO_(2)-WO_(3)固体超强酸催化剂,采用N 2吸附-脱附、XRD、TPD、TPR和Py-IR等手段对所制备催化剂进行了分析表征;在5 mL连续固定床反应装置上,考察了WO_(3)含量对Pt-SO_(4)^(2-)/ZrO_(2)-WO_(3)催化剂作用下正己烷临氢异构化反应活性的影响。结果表明:WO_(3)的引入能够显著调节Pt-SO_(4)^(2-)/ZrO_(2)-WO_(3)催化剂中四方晶相ZrO_(2)含量、比表面积、孔体积、平均孔径和酸量等,使暴露在催化剂表面的活性中心明显增加;在反应温度240℃、反应压力2.0 MPa、体积空速1.0 h-1、氢气/正己烷体积比600的条件下,WO_(3)质量分数16%的Pt-SO_(4)^(2-)/ZrO_(2)-WO_(3)催化剂的异构化活性最高,正己烷转化率为82.27%,异构化率为81.32%,二甲基丁烷选择性为34.28%。 展开更多
关键词 正己烷 固体超强酸 Pt-SO_(4)^(2-)/zro_(2)-WO_(3)催化剂 临氢异构化
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石榴石型立方相Li_(7)La_(3)Zr_(2)O_(12)固态电解质的制备及储锂性能
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作者 侯宏英 贾彦鹏 +5 位作者 王一玄 吕安 叶萌 于晓华 荣菊 刘显茜 《化工新型材料》 CAS CSCD 北大核心 2024年第11期136-140,147,共6页
石榴石型立方相Li_(7)La_(3)Zr_(2)O_(12)(LLZO)具有高的离子电导率和热稳定性,在固态锂电池领域颇具应用前景。煅烧温度对制备高性能立方相LLZO至关重要。为此,首先采用不同煅烧温度(1050℃、1100℃、1150℃、1200℃、1250℃)制备了LL... 石榴石型立方相Li_(7)La_(3)Zr_(2)O_(12)(LLZO)具有高的离子电导率和热稳定性,在固态锂电池领域颇具应用前景。煅烧温度对制备高性能立方相LLZO至关重要。为此,首先采用不同煅烧温度(1050℃、1100℃、1150℃、1200℃、1250℃)制备了LLZO,然后将10%磺酸甜菜碱改性的聚偏二氟乙烯(SB-PVDF)与90%LLZO复合制备固态电解质膜,并研究其电化学储锂性能。结果表明:在最优煅烧温度1200℃时制备的LLZO为纯立方相结构,相对致密度高达92.4%,离子电导率为1.21×10^(-4)S/cm,活化能为0.335eV,相应的固态锂电池在1.0C充放电时的放电比容量为124.3mAh/g,循环200圈后容量保持率为93.4%,优于其他样品。 展开更多
关键词 固态电解质 Li_(7)La_(3)Zr_(2)O_(12) 煅烧温度 固态锂电池 界面兼容性
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合成低聚甘油M/ZrO_(2)催化剂的制备及性能
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作者 洪华杰 陈钰桐 +2 位作者 蔡晓兰 谭伟 方岩雄 《精细化工》 EI CAS CSCD 北大核心 2023年第9期2020-2026,共7页
采用共沉淀法分别将Na^(+)、K^(+)、Ca^(2+)、Sr^(2+)、Ba^(2+)掺杂到ZrO_(2)中,制得了Na/ZrO_(2)、K/ZrO_(2)、Ca/ZrO_(2)、Sr/ZrO_(2)、Ba/ZrO_(2)催化剂,并将其用于合成低聚甘油。通过XRD、Raman、CO_(2)-TPD考察了不同金属离子掺杂... 采用共沉淀法分别将Na^(+)、K^(+)、Ca^(2+)、Sr^(2+)、Ba^(2+)掺杂到ZrO_(2)中,制得了Na/ZrO_(2)、K/ZrO_(2)、Ca/ZrO_(2)、Sr/ZrO_(2)、Ba/ZrO_(2)催化剂,并将其用于合成低聚甘油。通过XRD、Raman、CO_(2)-TPD考察了不同金属离子掺杂对催化剂结构及其表面碱量的影响。采用GC和ICP考察了催化剂的活性和稳定性。结果表明,Na/ZrO_(2)和K/ZrO_(2)为单斜相,Ba/ZrO_(2)为四方相,Ca/ZrO_(2)和Sr/ZrO_(2)为立方相,且各催化剂表现出不同的碱性位点。5种催化剂中,Ca/ZrO_(2)表现出最佳的稳定性,Ca^(2+)浸出量(质量分数)为0.003%,催化剂用量减半并循环使用4次后,甘油转化率保持在22%以上,催化剂回收率在95%以上。在Ca/ZrO_(2)为1.0 g、甘油100 g、反应温度270℃、反应24 h的条件下,低聚甘油产率为73.05%,选择性为100%。 展开更多
关键词 低聚甘油 氧化锆 固体碱 催化性能 甘油 医药原料
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The effects of amino groups and open metal sites of MOFs on polymer-based electrolytes for all-solid-state lithium metal batteries 被引量:5
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作者 Jiahao Lu Zhimeng Wang +7 位作者 Qi Zhang Cheng Sun Yanyan Zhou Sijia Wang Xiangyun Qiu Shoudong Xu Rentian Chen Tao Wei 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第8期80-89,共10页
Metal-organic frameworks(MOFs) are becoming more and more popular as the fillers in polymer electrolytes in recent years. In this study, a series of MOFs(NH_(2)-MIL-101(Fe), MIL-101(Fe), activated NH_(2)-MIL-101(Fe) a... Metal-organic frameworks(MOFs) are becoming more and more popular as the fillers in polymer electrolytes in recent years. In this study, a series of MOFs(NH_(2)-MIL-101(Fe), MIL-101(Fe), activated NH_(2)-MIL-101(Fe) and activated MIL-101(Fe)) were synthesized and added to PEO-based solid composite electrolytes(SCEs). Furthermore, the role of the —NH_(2) groups and open metal sites(OMSs) were both examined. Different ratios of MOFs vs polymers were also studied by the electrochemical characterizations. At last, we successfully designed a novel solid composite electrolyte containing activated NH_(2)-MIL-101(Fe),PEO, Li TFSI and PVDF for the high-performance all-solid-state lithium-metal batteries. This work might provide new insight to understand the interactions between polymers and functional groups or OMSs of MOFs better. 展开更多
关键词 solid composite electrolytes NH_(2)-MIL-101(Fe) All solid-state lithium metal batteries Metal-organic frameworks(MOFs) Open metal sites(OMSs)
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焙烧温度对MgO/ZrO_(2)固体碱低温催化氧化NO性能的影响 被引量:3
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作者 何人广 李秋瑾 +2 位作者 赵光垒 贾丽娟 刘天成 《现代化工》 CAS CSCD 北大核心 2023年第6期118-121,128,共5页
采用共沉淀法制备了微孔MgO/ZrO_(2)固体碱催化剂,考察了焙烧温度对催化剂催化氧化NO效率的影响,利用N2吸附/脱附、XRD、SEM及FT-IR对催化剂结构进行表征。结果表明,催化氧化NO的反应温度为150℃时,400℃焙烧的催化剂催化氧化NO的转化... 采用共沉淀法制备了微孔MgO/ZrO_(2)固体碱催化剂,考察了焙烧温度对催化剂催化氧化NO效率的影响,利用N2吸附/脱附、XRD、SEM及FT-IR对催化剂结构进行表征。结果表明,催化氧化NO的反应温度为150℃时,400℃焙烧的催化剂催化氧化NO的转化率达到了94.25%。焙烧温度为400℃时,催化剂的比表面积为214.52 m^(2)/g、平均孔径为1.88 nm、孔体积为0.2156 cm^(3)/g,并且其表面颗粒分散性好,使催化剂能与NO充分接触,利于催化氧化NO。 展开更多
关键词 MgO/zro_(2) 固体碱 焙烧温度 催化氧化 NO
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Composite solid electrolyte of Na3PS4-PEO for all-solid-state SnS2/Na batteries with excellent interfacial compatibility between electrolyte and Na metal 被引量:7
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作者 Xiaoyan Xu Yuanyuan Li +6 位作者 Jun Cheng Guangmei Hou Xiangkun Nie Qing Ai Linna Dai Jinkui Feng Lijie Ci 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第2期73-78,共6页
High ionic conductivity and superior interfacial stability of solid electrolytes at the electrodes are crucial factors for high-performance all-solid-state sodium batteries. Herein, a composite solid electrolyte Na3PS... High ionic conductivity and superior interfacial stability of solid electrolytes at the electrodes are crucial factors for high-performance all-solid-state sodium batteries. Herein, a composite solid electrolyte Na3PS4-polyethylene oxide is synthesized by the solution-phase reaction method with an improved ionic conductivity up to 9.4 × 10-5 S/cm at room temperature. Moreover, polyethylene oxide polymer layer is wrapped homogeneously on the surface of Na3PS4 particles, which could effectively avoid the direct contact between Na3PS4 electrolyte and sodium metal, thus alleviate their side reactions. We demonstrate that all-solid-state battery SnS2/Na with the composite solid electrolyte Na3PS4-polyethylene oxide delivers an enhanced electrochemical performance with 230 m Ah/g after 40 cycles. 展开更多
关键词 COMPOSITE solid electrolyte NA 3PS4 ALL-solid-STATE sodium battery SnS2
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Synthesis and electrochemical performance of (100-x)Li7P3S11-xLi2OHBr composite solid electrolyte for all-solid-state lithium batteries 被引量:4
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作者 Su-Yeon Jung Rajesh Rajagopal Kwang-Sun Ryu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第8期307-316,I0011,共11页
Li7P3S11solid electrolytes with high lithium-ion conductivity are promising candidates for use in all-solidstate lithium batteries.However,this electrolyte’s poor interfacial compatibility with lithium electrodes cau... Li7P3S11solid electrolytes with high lithium-ion conductivity are promising candidates for use in all-solidstate lithium batteries.However,this electrolyte’s poor interfacial compatibility with lithium electrodes causes unstable cyclability.In this study,in order to address this problem,(100-x)Li7P3S11-xLi2OHBr(x=0,2,5,10,20,30,40,and 50)electrolytes are prepared by a high energy ball-milling technique and heat-treatment process.The resulting(100-x)Li7P3S11-xLi2OHBr(x=2,5,10,20,30,40,and 50)electrolytes provide improved electrochemical performance with good cycling stability and a wide electrochemical window of up to 10 V(vs.Li/Li+).Moreover,these electrolytes have high ionic conductivity of 10-4–10-5S/cm at room temperature.Particularly,the 90Li7P3S11-10Li2OHBr electrolyte displays the highest conductivity of 4.4×10-4S/cm at room temperature as well as improved cyclability.Moreover,90Li7P3S11-10Li2OHBr shows decreased interfacial resistance between the solid electrolyte and cathode electrode,which was revealed by Electrochemical Impedance Spectroscopy(EIS)analysis.The initial discharge capacity of 90Li7P3S11-10Li2OHBr was found to be 135 m Ah/g when used in a In|solid electrolyte|Li(Ni0.6Co0.2Mn0.2)O2 all-solid-state lithium battery(ASSLB).Thus,we can conclude the addition of Li2OHBr into the Li7P3S11results in enhanced electrochemical properties. 展开更多
关键词 All-solid-state lithium battery solid electrolyte solid sulfide electrolyte Li2OHBr ANTIPEROVSKITE
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Al-incorporation into Li7La3Zr2O12 solid electrolyte keeping stabilized cubic phase for all-solid-state Li batteries 被引量:4
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作者 Changbin Im Dongwon Park +1 位作者 Hosung Kim Jaeyoung Lee 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第5期1501-1508,共8页
We observe the influence of AI occupancies in Li sites on the formation process of the garnet solid elec- trolyte of Li_7La_3Zr_2O_12 (LLZO). A direct incorporation of AI is first promoted in a Li-insufficient garne... We observe the influence of AI occupancies in Li sites on the formation process of the garnet solid elec- trolyte of Li_7La_3Zr_2O_12 (LLZO). A direct incorporation of AI is first promoted in a Li-insufficient garnet solid electrolyte during the calcination process of 850 ℃ and then the cubic phase of LLZO is obtained after successive annealing step of 1000 ℃. Comparing to pristine LLZO, AI incorporated LLZO shows less formation of Li_2CO_3, keeping crystallographic and physicochemical properties. This AI incorporation im- proves both the ionic conductivity and interfacial resistance to poisoning procedure. 展开更多
关键词 Li_7La_3Zr_2O_12 AI incorporation Garnet solid electrolyte Cubic phase
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Catalytic Hydrolysis of CFC-12 over MoO_(3)/ZrO_(2)-TiO_(2)
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作者 谭小芳 ZHOU Tong +3 位作者 LI Zhiqian REN Guoqing JIA Lijuan 刘天成 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第1期59-64,共6页
Solid acid MoO_(3)/ZrO_(2)-TiO_(2)catalysts were prepared by impregnation method,and catalytic hydrolysis of difluorodichloromethane(CFC-12)over the catalyst was studied.The presence of MoO_(3)/ZrO_(2)-TiO_(2)catalyst... Solid acid MoO_(3)/ZrO_(2)-TiO_(2)catalysts were prepared by impregnation method,and catalytic hydrolysis of difluorodichloromethane(CFC-12)over the catalyst was studied.The presence of MoO_(3)/ZrO_(2)-TiO_(2)catalyst in polycrystalline state could be clearly observed by transmission electron microscopy(TEM).Mesopores were detected by N2 adsorption-desorption isotherms which further confirmed the MoO_(3)/ZrO_(2)-TiO_(2)structural characteristics of catalyst.The results of NH_(3)-TPD showed that the calcination temperatures had a great influence on the acidity of the catalyst,and the weak acidic site had a strong catalytic activity for the catalytic hydrolysis of CFC-12.Moreover,ZrO_(2)-TiO_(2)was highly dispersed in the MoO_(3)framework,suggested by powder X-ray diffraction(XRD)and N_(2)adsorption-desorption results.The effects of the catalyst calcination temperatures on the conversion rate of CFC-12 were studied.The effects of catalytic hydrolysis temperatures and water vapor concentration on the catalytic hydrolysis rate of CFC-12 were also studied.The solid acid MoO_(3)/ZrO_(2)-TiO_(2)was calcined at 500℃for 3 h at a catalytic hydrolysis temperature of 400℃and water vapor concentration of 83.18%,and catalytic hydrolysis rate of CFC-12 reached 98.65%.The hydrolysis rate of CFC-12 remained above 65.34%after 30 hours continuous reaction. 展开更多
关键词 catalytic hydrolysis difluorodichloromethane(CFC-12) MoO_(3)/zro_(2)-TiO_(2) solid acid catalyst
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固态电解质Li_(1+x)Al_(x)Ti_(2-x)(PO_(4))_(3)中Li+的迁移特性
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作者 李梅 钟淑英 +2 位作者 胡军平 孙宝珍 徐波 《物理学报》 SCIE EI CAS CSCD 北大核心 2024年第13期356-366,共11页
Li_(1+x)Al_(x)Ti_(2-x)(PO_(4))_(3)(LATP)是一种颇具前景的NASICON型锂离子固态电解质.本文通过第一性原理计算研究了不同Al掺杂浓度(x=0.00,0.16,0.33,0.50)对LATP的结构特性、电学特性以及Li^(+)迁移特性的影响.结果表明,Al能够稳... Li_(1+x)Al_(x)Ti_(2-x)(PO_(4))_(3)(LATP)是一种颇具前景的NASICON型锂离子固态电解质.本文通过第一性原理计算研究了不同Al掺杂浓度(x=0.00,0.16,0.33,0.50)对LATP的结构特性、电学特性以及Li^(+)迁移特性的影响.结果表明,Al能够稳定掺杂进入LiTi2(PO4)3(LTP)的晶体结构当中.当Al掺杂浓度x=0.16时,Li—O键的平均键长最长,成键强度最弱,而Ti—O键强度随Al掺杂浓度变化不大.Al掺杂浓度对LATP带隙的影响不大,但Al附近的O原子聚集了更多的负电荷,形成AlO6极化中心.Li^(+)不同的迁移方式(空位迁移、间隙位迁移和协同迁移)在Al掺杂浓度不同时展现出复杂的能垒变化,Li^(+)在空位迁移中迁移势垒随Al掺杂浓度的增大而升高,而在间隙位迁移中Li^(+)的迁移势垒变化相反,由于协同迁移中涉及空位和间隙位两种位点,Li^(+)的迁移势垒表现为随Al掺杂浓度的升高先降低后升高的复杂变化.当x=0.50时,LATP具有最低的Li^(+)迁移势垒0.342 eV,这个势垒值是间隙位迁移的结果.因此,通过改变Al掺杂浓度,可改变间隙Li^(+)浓度及迁移通道结构,进而调节Li^(+)的迁移性能,提高LATP中的Li^(+)导电性能. 展开更多
关键词 全固态Li^(+)电池 AL掺杂 Li_(1+x)Al_(x)Ti_(2-x)(PO_(4))_(3) Li^(+)迁移
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Investigation on pumping oxygen characteristics of (Bi_2O_3)_(0.73)(Y_2O_3)_(0.27) solid electrolyte 被引量:3
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作者 厉英 王常珍 《Journal of Rare Earths》 SCIE EI CAS CSCD 2008年第3期337-340,共4页
(Bi2O3)0.73(Y2O3)0.27 fine powders prepared by wet chemical precipitation method were cold isostatically pressed to form solid electrolyte tubes, and sintered at 900 ℃ for 10 h in the air. Their pumping oxygen ch... (Bi2O3)0.73(Y2O3)0.27 fine powders prepared by wet chemical precipitation method were cold isostatically pressed to form solid electrolyte tubes, and sintered at 900 ℃ for 10 h in the air. Their pumping oxygen characteristics in non-dehydrated Ar gas were investigated, where a ZrO2 (Y2O3 stabilized) oxygen sensor was used to measure the oxygen partial pressure Po2. The results showed that the Po2 value reached magnitudes of 1×10^-2-1×10^-10 Pa at the applied pumping oxygen voltage of 0.5 V, 1×10^-37-1×10^-27 Pa at 1.0 V and 1×10^-53-1×10^47 Pa at 2.0 V within the temperature range from 550 to 650 ℃. Moreover, no cracks were found in the tested solid electrolyte tubes. Thus, the Bi2O3-Y2O3 system might be used in solid electrolyte oxygen pump for purifying gases. 展开更多
关键词 (Bi2O3)0.73(Y2O3)0.27 solid electrolyte oxygen sensor oxygen pump rare earths
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From protonation & Li-rich contamination to grain-boundary segregation: Evaluations of solvent-free vs. wet routes on preparing Li_(7)La_(3)Zr_(2)O_(12) solid electrolyte 被引量:2
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作者 Xiao Huang Yang Lu +4 位作者 Yajun Niu Jiawen Tang Yongjian Zhou Yan Yang Bingbing Tian 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第10期223-239,I0005,共18页
Garnet-type Li_(7)La_(3)Zr_(2)O_(12)(LLZO) has been recognized as a candidate solid electrolyte for high-safety Lianode based solid-state batteries because of its electro-chemical stability against Li-metal and high i... Garnet-type Li_(7)La_(3)Zr_(2)O_(12)(LLZO) has been recognized as a candidate solid electrolyte for high-safety Lianode based solid-state batteries because of its electro-chemical stability against Li-metal and high ionic conductivity. Solvent(e.g., isopropanol(IPA)) has been commonly applied for preparing LLZO powders and ceramics. However, the deterioration of the proton-exchange between LLZO and IPA/absorbed moisture during the mixing and tailoring route has aroused less attention. In this study, a solvent-free dry milling route was developed for preparing the LLZO powders and ceramics. For orthogonal four categories of samples prepared using solvent-free and IPA-assisted routes in the mixing and tailoring processes, the critical evaluation was conducted on the crystallinity, surficial morphology, and contamination of ascalcinated and as-tailored particles, the cross-sectional microstructure of green and sintered pellets,the morphology and electro-chemical properties of grain boundaries in ceramics, as well as the interfacial resistance and performance of Li anode based symmetric batteries. The wet route introduced Li-rich contaminations(e.g., Li OH·H)_(2)O and Li)_(2)CO)_(3)) onto the surfaces of LLZO particles and Li-Ta-O segregations at the adjacent and triangular grain boundaries. The LLZO solid electrolytes prepared through dry mixing in combination with the dry tailoring route without the use of any solvent were found to the optimal performance. The fundamental material properties in the whole LLZO preparation process were found, which are of guiding significance to the development of LLZO powder and ceramic production craft. 展开更多
关键词 Li_(7)La_(3)Zr_(2)O_(12) solid electrolyte Solvent-free procedure Ion-exchange Grain boundary Fundamental material properties
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FREE ENERGY OF FORMATION OF Na_2SnO_3 BY EMF MEASUREMENT USING β-ALUMINA SOLID ELECTROLYTE CELL 被引量:1
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作者 ZHENG Minhui CHEN Yisong University of Science and Technology Beijing,Beijing,China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1992年第10期320-322,共3页
A β”/β-Al_2O_3 solid electrolyte was prepared and used in a Na conentration galvanic cell: (-)O_2(in Ar),SnO_2,Na_2SnO_3|β"/β-Al_2O_3]NaCrO_2,Cr_2O_3,O_2(in Ar)(+).The emf measurements were carried out in te... A β”/β-Al_2O_3 solid electrolyte was prepared and used in a Na conentration galvanic cell: (-)O_2(in Ar),SnO_2,Na_2SnO_3|β"/β-Al_2O_3]NaCrO_2,Cr_2O_3,O_2(in Ar)(+).The emf measurements were carried out in temperature range of 912—1223 K:E=652.1— 0.2092 T+2.3(mV).Using this equation and cited free energies of formation of NaCrO_2, Cr_2O_3 and SnO_2,the molar free energy of formation of Na_2 SnO_3 may be calculated by ΔG°=-1050+0.2544 T±5.4(kJ mol^(-1)). 展开更多
关键词 Na_2SnO_3 free energy of formation β"/β-Al_2O_3 solid electrolyte
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低成本Nb掺杂Li_(7)La_(3)Zr_(2)O_(12)固态电解质的性能与应用研究
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作者 冯玉川 张鑫 +2 位作者 王明辉 何泓材 林元华 《电子元件与材料》 CAS 北大核心 2024年第7期764-771,共8页
固态电池因其在能量密度、循环寿命和安全性等方面的优异性能受到关注。其核心组件为固态电解质材料。具有石榴石结构的Li_(7)La_(3)Zr_(2)O_(12)(LLZO)氧化物固态电解质由于具备宽电化学窗口、良好的离子传导性、稳定的化学性能及简单... 固态电池因其在能量密度、循环寿命和安全性等方面的优异性能受到关注。其核心组件为固态电解质材料。具有石榴石结构的Li_(7)La_(3)Zr_(2)O_(12)(LLZO)氧化物固态电解质由于具备宽电化学窗口、良好的离子传导性、稳定的化学性能及简单的制备工艺等特点而得到广泛研究。本研究采用Nb元素对LLZO进行掺杂,成功制备得到Li_(6.75)La_(3)Zr_(1.75)Nb_(0.25)O_(12)(LLZNO)氧化物固态电解质,其离子电导率达到了7.79×10^(-4)S/cm,且制备成本与未掺杂的LLZO相比无明显增加。将其涂覆在聚乙烯(PP)隔膜表面形成PP-LLZNO隔膜,表现出良好的热稳定性和离子电导率。与Al_(2)O_(3)涂覆隔膜或固态电解质Li_(6.75)La_(3)Zr_(1.75)Ta_(0.25)O_(12)(LLZTO)涂覆隔膜组装的电池相比,组装了PP-LLZNO涂覆隔膜的扣式电池和软包电池的容量保持率分别达到了84.99%(50圈)和57.40%(100圈),展现出更优异的性能。因此,高离子电导率和低成本LLZNO的制备对固态电解质的大规模生产及在固态电池中的广泛应用具有一定的参考意义。 展开更多
关键词 固态电池 Li_(7)La_(3)Zr_(2)O_(12) Nb掺杂 固态电解质涂覆隔膜 软包电池
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NASICON型Na_(1+x)Zr_(2)Si_(x)P_(3-x)O_(12)固态电解质及其钠金属电池研究进展
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作者 许希军 林见烽 +2 位作者 罗雄伟 赵经纬 霍延平 《无机盐工业》 CAS CSCD 北大核心 2024年第11期1-14,38,共15页
锂离子电池由于具有较高的工作电压和能量密度实现了商业化。然而,有限的锂资源限制了其广泛应用。钠离子电池展现出与锂离子电池相似的电化学特性,并且钠盐资源更加丰富,因此受到了广泛关注。目前,钠离子电池使用的是有机电解液,这存... 锂离子电池由于具有较高的工作电压和能量密度实现了商业化。然而,有限的锂资源限制了其广泛应用。钠离子电池展现出与锂离子电池相似的电化学特性,并且钠盐资源更加丰富,因此受到了广泛关注。目前,钠离子电池使用的是有机电解液,这存在一系列安全隐患,如漏液和燃烧等,采用固态电解质可以有效解决这些问题。然而,电解质的离子电导率仍有待提升,且材料制备的一致性及与电极间的界面阻抗问题限制了其广泛应用。针对离子电导率的问题,总结分析了不同价态离子取代的影响。针对存在的界面问题,从正极、负极两侧分析了现有Na_(1+x)Zr_(2)Si_(x)P_(3-x)O_(12)电解质的界面改性方法。最后,对Na_(1+x)Zr_(2)Si_(x)P_(3-x)O_(12)电解质的发展方向进行了展望,有望推动固态钠离子电池的发展。 展开更多
关键词 钠离子电池 固态电解质 Na_(1+x)Zr_(2)Si_(x)P_(3-x)O_(12) 离子电导率 界面修饰
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