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Two-dimensional layered In_(2)P_(3)S_(9): A novel superior anode material for sodium-ion batteries
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作者 Longsheng Zhong Hongneng Chen +4 位作者 Yanzhe Sheng Yiting Sun Yanhe Xiao Baochang Cheng Shuijin Lei 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期294-304,I0008,共12页
Developing reliable and efficient anode materials is essential for the successfully practical application of sodium-ion batteries.Herein,employing a straightforward and rapid chemical vapor deposition technique,two-di... Developing reliable and efficient anode materials is essential for the successfully practical application of sodium-ion batteries.Herein,employing a straightforward and rapid chemical vapor deposition technique,two-dimensional layered ternary indium phosphorus sulfide(In_(2)P_(3)S_(9)) nanosheets are prepared.The layered structure and ternary composition of the In_(2)P_(3)S_(9) electrode result in impressive electrochemical performance,including a high reversible capacity of 704 mA h g^(-1) at 0.1 A g^(-1),an outstanding rate capability with 425 mA h g^(-1) at 5 A g^(-1),and an exceptional cycling stability with a capacity retention of88% after 350 cycles at 1 A g^(-1).Furthermore,sodium-ion full cell also affords a high capacity of 308 and114 mA h g^(-1) at 0.1 and 5 A g^(-1).Ex-situ X-ray diffraction and ex-situ high-resolution transmission electron microscopy tests are conducted to investigate the underlying Na-storage mechanism of In_(2)P_(3)S_(9).The results reveal that during the first cycle,the P-S bond is broken to form the elemental P and In_(2)S_(3),collectively contributing to a remarkably high reversible specific capacity.The excellent electrochemical energy storage results corroborate the practical application potential of In_(2)P_(3)S_(9) for sodium-ion batteries. 展开更多
关键词 Metal thiophosphate In_(2)P_(3)S_(9) Anode material Sodium-ion battery Full cell
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Review and prospects on the low-voltage Na_(2)Ti_(3)O_(7) anode materials for sodium-ion batteries
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作者 Jun Dong Yalong Jiang +3 位作者 Ruxing Wang Qiulong Wei Qinyou An Xiaoxing Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第1期446-460,I0011,共16页
Due to its low cost and natural abundance of sodium,Na-ion batteries(NIBs)are promising candidates for large-scale energy storage systems.The development of ultralow voltage anode materials is of great significance in... Due to its low cost and natural abundance of sodium,Na-ion batteries(NIBs)are promising candidates for large-scale energy storage systems.The development of ultralow voltage anode materials is of great significance in improving the energy density of NIBs.Low-voltage anode materials,however,are severely lacking in NIBs.Of all the reported insertion oxides anodes,the Na_(2)Ti_(3)O_(7) has the lowest operating voltage(an average potential of 0.3 V vs.Na^(+)/Na)and is less likely to deposit sodium,which has excellent potential for achieving NIBs with high energy densities and high safety.Although significant progress has been made,achieving Na_(2)Ti_(3)O_(7) electrodes with excellent performance remains a severe challenge.This paper systematically summarizes and discusses the physicochemical properties and synthesis methods of Na_(2)Ti_(3)O_(7).Then,the sodium storage mechanisms,key issues and challenges,and the optimization strategies for the electrochemical performance of Na_(2)Ti_(3)O_(7) are classified and further elaborated.Finally,remaining challenges and future research directions on the Na_(2)Ti_(3)O_(7) anode are highlighted.This review offers insights into the design of high-energy and high-safety NIBs. 展开更多
关键词 Sodium-ion batteries Low-voltage anode materials Na_(2)Ti_(3)O_(7) Electrochemical performances Electrochemical mechanism
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Effects of Al_(2)O_(3)-SiO_(2) Raw Material Types on Properties of Anorthite Based Insulation Refractories
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作者 DU Juan GUO Huishi +4 位作者 YANG Jialin LI Wenfeng GUI Yanghai ZHAO Zhiqiang LIU Yingfan 《China's Refractories》 CAS 2024年第1期23-27,共5页
To optimize their Al_(2)O_(3)-SiO_(2) raw materials,anorthite based insulation refractories were prepared by the in-situ sintering process combined with the foaming method after sintering at 1350℃for 3 h,using green ... To optimize their Al_(2)O_(3)-SiO_(2) raw materials,anorthite based insulation refractories were prepared by the in-situ sintering process combined with the foaming method after sintering at 1350℃for 3 h,using green and pollution-free kaolin,kyanite,andalusite and sillimanite as Al_(2)O_(3)-SiO_(2) raw materials,respectively,and industrial CaCO_(3) as the CaO source.Effects of Al_(2)O_(3)-SiO_(2) raw material types on the physical properties,phase composition and microstructure were investigated.The results are as follows.All samples prepared by different Al_(2)O_(3)-SiO_(2) raw materials have hexagonal flake anorthite and a small amount of mullite and corundum.Their bulk density and thermal conductivity decrease in the order of using kaolin,andalusite,kyanite and sillimanite as the Al_(2)O_(3)-SiO_(2) raw material,but their apparent porosity increases.Moreover,in the sample with kaolin,the bonding between anorthite crystals on the pore walls is closer than that of the other samples,which is conducive to increasing the cold crushing strength.The bonding between anorthite crystals on pore walls gradually decreases in the order of using kyanite,andalusite and sillimanite as the Al_(2)O_(3)-SiO_(2) raw material,thus their cold crushing strength decreases accordingly.In comprehensive consideration,the properties of the sample from kyanite are the optimal.Its apparent porosity,thermal conductivity and cold crushing strength are 84.6%,0.141 W·m^(-1)·K^(-1) and 1.89 MPa,respectively. 展开更多
关键词 anorthite based insulation refractories Al_(2)O_(3)-SiO_(2)raw materials crushing strength thermal conductivity microstructure
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Sm^(3+)掺杂0.96Na_(0.5)Bi_(0.5)TiO_(3)-0.04CaTiO_(3)陶瓷的制备及光致发光性能研究
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作者 马春林 王梓珩 +2 位作者 范雨香 胡颖 胡亚洲 《人工晶体学报》 CAS 北大核心 2023年第8期1509-1515,共7页
采用固相烧结法制备了一系列Sm^(3+)掺杂0.96Na_(0.5)Bi_(0.5)TiO_(3)-0.04CaTiO_(3)(NBT-0.04CT∶xSm^(3+),0.002≤x≤0.020)无铅陶瓷。通过X射线衍射仪表征样品的物相结构,所有样品均呈现单一钙钛矿结构。用荧光光谱仪测量样品的发光... 采用固相烧结法制备了一系列Sm^(3+)掺杂0.96Na_(0.5)Bi_(0.5)TiO_(3)-0.04CaTiO_(3)(NBT-0.04CT∶xSm^(3+),0.002≤x≤0.020)无铅陶瓷。通过X射线衍射仪表征样品的物相结构,所有样品均呈现单一钙钛矿结构。用荧光光谱仪测量样品的发光性能,样品在479 nm处激发峰最强,可与白光LED合成中使用的蓝色LED芯片相匹配。发射主峰位于597 nm(^(4)G_(5/2)→^(6)H_(7/9)),呈现强橙红色发光。NBT-0.04CT∶0.010Sm^(3+)陶瓷在Sm^(3+)掺杂NBT-0.04CT陶瓷中的发光性能最佳,且在278~473 K陶瓷样品的发光性能呈现良好的热稳定性。结果表明,NBT-0.04CT∶xSm^(3+)陶瓷在白光LED中具有广阔的应用前景。 展开更多
关键词 无铅陶瓷 0.96Na_(0.5)Bi_(0.5)TiO_(3)-0.04catio_(3) Sm^(3+)掺杂 光致发光 热稳定性
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Sb_(2)S_(3)/石墨烯负极材料的制备及其储钠性能研究
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作者 王旭 杨观华 +2 位作者 李翼宏 张志国 张杰 《广西科技大学学报》 CAS 2024年第1期106-112,共7页
钠离子电池(sodium-ion batteries,SIBs)具有成本低的潜在优势,有望成为替代锂离子电池(lithium ion batteries,LIBs)的储能设备。为提升钠离子电池的性能,开发出适应钠离子脱嵌的负极材料尤为重要。硫化锑(Sb_(2)S_(3))因其理论比容量... 钠离子电池(sodium-ion batteries,SIBs)具有成本低的潜在优势,有望成为替代锂离子电池(lithium ion batteries,LIBs)的储能设备。为提升钠离子电池的性能,开发出适应钠离子脱嵌的负极材料尤为重要。硫化锑(Sb_(2)S_(3))因其理论比容量高被认为是较好的钠离子电池负极材料。本文使用简单水热法将Sb_(2)S_(3)与石墨烯复合,制备Sb_(2)S_(3)/石墨烯复合材料(Sb_(2)S_(3)/Gr)。结果表明:Sb_(2)S_(3)/Gr作为钠离子电池负极时,不仅表现出良好的电导率(3.5×10~(-3)S/cm)和钠离子扩散速率(4.853×10~(-13)cm~2/s),而且在0.5 A/g的电流密度下,首圈库伦效率为76.27%,经150次循环后的比容量稳定在488 m A·h/g,表现出较高的比容量。Sb_(2)S_(3)/Gr复合材料表现出了极大的应用潜力,为高性能钠离子电池负极材料的研发提供了一定的参考价值。 展开更多
关键词 钠离子电池 硫化锑(Sb_(2)S_(3)) 石墨烯 负极材料
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LaNi_(0.6)Fe_(0.4)O_(3)阴极接触材料导电特性调控及其对SOFC电化学性能的影响
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作者 张琨 王宇 +3 位作者 朱腾龙 孙凯华 韩敏芳 钟秦 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第4期367-373,共7页
鉴于平板式固体氧化物燃料电池(SOFC)电堆对低面电阻、高稳定性阴极接触材料的需求,本研究阐明了LaNi_(0.6)Fe_(0.4)O_(3)(LNF)颗粒尺寸调控对导电和SOFC单电池性能演变的影响机制,优化了LNF预处理工艺,降低了接触组件面电阻,提升了SOF... 鉴于平板式固体氧化物燃料电池(SOFC)电堆对低面电阻、高稳定性阴极接触材料的需求,本研究阐明了LaNi_(0.6)Fe_(0.4)O_(3)(LNF)颗粒尺寸调控对导电和SOFC单电池性能演变的影响机制,优化了LNF预处理工艺,降低了接触组件面电阻,提升了SOFC单电池性能及热循环稳定性。结果表明:预压造粒的样品(LNF-2)与高温烧结预处理的样品(LNF-3)的面电阻更小,分别为0.074和0.076Ω·cm^(2);在750℃施加1 A/cm^(2)电流负载后,能够更快地进入稳态,并保持颗粒尺寸稳定。其中,LNF-2单电池在750℃下的峰值功率密度0.94 W/cm^(2)较未处理的LNF的0.66 W/cm^(2)高,但在热循环过程中性能衰减较大,下降了20%;而LNF-3单电池在20次热循环后峰值功率密度仅下降了4%。本研究对高可靠SOFC电堆装配及其长寿命稳定运行具有指导及参考价值。 展开更多
关键词 固体氧化物燃料电池(SOFC) 阴极接触材料 LaNi_(0.6)Fe_(0.4)O_(3) 热循环
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不同元素掺杂对CaTiO_(3)微观结构及热电性能的影响
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作者 李建波 田震 +4 位作者 蒋全伟 于砺锋 康慧君 曹志强 王同敏 《无机材料学报》 SCIE EI CSCD 北大核心 2023年第12期1396-1404,I0007-I0009,共12页
CaTiO_(3)是一种新兴的高温氧化物热电材料,但多种元素掺杂对其微观结构与热电性能的影响规律尚不清晰。本研究采用水热法结合真空热压烧结分别制备了Cr、Nb、Eu、Dy、Ce与La六种不同元素掺杂的CaTiO_(3)多晶块体样品。Cr掺杂导致大量... CaTiO_(3)是一种新兴的高温氧化物热电材料,但多种元素掺杂对其微观结构与热电性能的影响规律尚不清晰。本研究采用水热法结合真空热压烧结分别制备了Cr、Nb、Eu、Dy、Ce与La六种不同元素掺杂的CaTiO_(3)多晶块体样品。Cr掺杂导致大量纳米级Cr相析出,由于基体中施主元素含量过低,功率因子严重损失,其ZT仅为0.012(983 K)。Eu掺杂并未为基体提供施主载流子,导致ZT提升不明显,仅为0.141(1031 K)。Nb掺杂导致高热导的微米级Nb相析出,热导率上升,但基体中Nb含量较多为基体提供了载流子,使其ZT有明显改善,达到0.263(1013 K)。Dy、Ce与La掺杂则既提供载流子又作为点缺陷散射声子,既提高了功率因子又降低了晶格热导率,极大地提升了热电性能,ZT在1031 K分别达到0.357、0.398、0.329,比纯CaTiO_(3)(0.096)分别提升了296%、342%、265%。其中,Dy掺杂的样品在整个温度测试范围内具有最低的晶格热导率和较高的功率因子,通过调控Dy含量与晶界处富集第二相的含量,可以解耦电和热传输性能,有望刷新目前CaTiO_(3)的ZT记录。本研究揭示了多种元素掺杂条件下CaTiO_(3)的成分-结构-性能联系,为其在高温热电领域的应用提供了理论支撑。 展开更多
关键词 catio_(3) 氧化物热电材料 微观结构 元素掺杂
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表面基团对Ti_(3)C_(2)T_(x)吸附NO性能影响的第一性原理研究
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作者 邱毅 邹江峰 +4 位作者 马智炜 罗强 刘忠华 陈洋 代逸飞 《材料导报》 EI CAS CSCD 北大核心 2024年第5期138-142,共5页
本工作基于密度泛函理论的第一性原理方法,构建了Ti_(3)C_(2)O_(2)、Ti_(3)C_(2)O1.5(OH)0.5、Ti_(3)C_(2)O(OH)、Ti_(3)C_(2)O1.5F0.5和Ti_(3)C_(2)OF五种模型,从几何结构、电荷转移以及电子性质等方面研究了基团种类和比例对Ti_(3)C_(... 本工作基于密度泛函理论的第一性原理方法,构建了Ti_(3)C_(2)O_(2)、Ti_(3)C_(2)O1.5(OH)0.5、Ti_(3)C_(2)O(OH)、Ti_(3)C_(2)O1.5F0.5和Ti_(3)C_(2)OF五种模型,从几何结构、电荷转移以及电子性质等方面研究了基团种类和比例对Ti_(3)C_(2)T_(x)吸附NO的影响。结果表明:相较于Ti_(3)C_(2)O_(2),含低比例-OH和-F基团的Ti_(3)C_(2)T_(x)对NO的吸附能更大,电荷转移更弱,不利于其探测NO,与实验结果一致;但随着-OH和-F比例的提高,吸附能分别减小和增大,电荷转移分别增强和减弱,表明高比例的-OH有利于Ti_(3)C_(2)T_(x)探测NO,而高比例的-F是不利的;同时,在吸附NO后,Ti_(3)C_(2)O_(2)在费米能级附近的能带极值曲率变小,电子有效质量增大,表明-O基团有利于Ti_(3)C_(2)T_(x)探测NO。在几何弛豫过程中NO分子总是以N原子靠近衬底,吸附距离均较小,而且最近邻原子的电子轨道出现杂化,电子的聚集和消散位于两端,表明最近邻原子间成键较弱且偏离子性。此计算结果可以为Ti_(3)C_(2)T_(x)探测和屏蔽NO提供理论指导,同时为Ti_(3)C_(2)T_(x)的表面改性提供思路。 展开更多
关键词 二维材料 Ti_(3)C_(2)T_(x) NO吸附 密度泛函理论 电子性质
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甲胺基金属卤化物MAPbX_(3)铁电半导体研究进展
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作者 南瑞华 刘腾 坚佳莹 《西安工业大学学报》 CAS 2024年第2期192-208,共17页
为了研究甲胺基金属卤化物MAPbX_(3)铁电半导体的铁电性对光伏性能的影响,文中梳理了近几年MAPbX_(3)的相关研究文献,分析了MAPbX_(3)晶体的光学吸收和载流子输运性能的影响因素,阐述了MAPbX_(3)铁电性的验证方法及铁电体中载流子的分... 为了研究甲胺基金属卤化物MAPbX_(3)铁电半导体的铁电性对光伏性能的影响,文中梳理了近几年MAPbX_(3)的相关研究文献,分析了MAPbX_(3)晶体的光学吸收和载流子输运性能的影响因素,阐述了MAPbX_(3)铁电性的验证方法及铁电体中载流子的分离机制,介绍了铁电半导体的应用,重点分析了MAPbX_(3)晶体结构方面的研究争议,讨论了MAPbX_(3)铁电性与铁弹性的关系,并对光伏器件的设计以及应用提出了新的研究思路。 展开更多
关键词 MAPbX_(3) 钙钛矿材料 光电性能 铁电性
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Application and prospects of 3D printing in physical experiments of rock mass mechanics and engineering:materials,methodologies and models 被引量:2
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作者 Qingjia Niu Lishuai Jiang +3 位作者 Chunang Li Yang Zhao Qingbiao Wang Anying Yuan 《International Journal of Coal Science & Technology》 EI CAS CSCD 2023年第1期1-17,共17页
The existence of joints or other kinds of discontinuities has a dramatic efect on the stability of rock excavations and engineering.As a result,a great challenge in rock mass mechanics testing is to prepare rock or ro... The existence of joints or other kinds of discontinuities has a dramatic efect on the stability of rock excavations and engineering.As a result,a great challenge in rock mass mechanics testing is to prepare rock or rock-like samples with defects.In recent years,3D printing technology has become a promising tool in the feld of rock mass mechanics and engineering.This study frst reviews and discusses the research status of traditional test methods in rock mass mechanics tests of making rock samples with defects.Then,based on the comprehensive analysis of previous research,the application of 3D printing technology in rock mass mechanics is expounded from the following three aspects.The frst is the printing material.Although there are many materials for 3D printing,it has been found that 3D printing materials that can be used for rock mass mechanics research are very limited.After research,we summarize and evaluate printing material that can be used for rock mass mechanics studies.The second is the printing methodology,which mainly introduces the current application forms of 3D printing technology in rock mass mechanics.This includes printed precise casting molds and one-time printed samples.The last one is the printing model,which includes small-scale samples for mechanical tests and large-scale physical models.Then,the benefts and drawbacks of using 3D printing samples in mechanical tests and the validity of their simulation of real rock are discussed.Compared with traditional rock samples collected in nature or synthetic rock-like samples,the samples made by 3D printing technology have unique advantages,such as higher test repeatability,visualization of rock internal structure and stress distribution.There is thus great potential for the use of 3D printing in the feld of rock mass mechanics.However,3D printing materials also have shortcomings,such as insufcient material strength and accuracy at this stage.Finally,the application prospect of 3D printing technology in rock mass mechanics research is proposed. 展开更多
关键词 3D printing Rock mass mechanics Prefabricated cracks Rock-like material Fractured rock mass
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高温固相反应法合成的CaTiO_(3)材料的研究
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作者 梁佳宁 杨健 +3 位作者 赫丽杰 苏锐 戴晨晨 郝春来 《耐火与石灰》 2023年第4期5-7,共3页
介绍了以碳酸钙(CaCO_(3))、氢氧化钙[Ca(OH)_(2)]和二氧化钛(TiO_(2))为原料,按钙钛配比为1配料,并加入3%聚乙烯醇(PVA),经混料、成型、干燥后制备成CaTiO_(3)材料试样,将试样分别在烧结温度1500℃、1550℃、1600℃、1650℃、1700℃下... 介绍了以碳酸钙(CaCO_(3))、氢氧化钙[Ca(OH)_(2)]和二氧化钛(TiO_(2))为原料,按钙钛配比为1配料,并加入3%聚乙烯醇(PVA),经混料、成型、干燥后制备成CaTiO_(3)材料试样,将试样分别在烧结温度1500℃、1550℃、1600℃、1650℃、1700℃下煅烧后得到了烧成CaTiO_(3)材料。利用XRD分析CaTiO_(3)材料的物相组成,通过SEM分析其显微结构。 展开更多
关键词 固相合成 catio_(3) 材料 烧结温度 物相组成 显微结构
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Germanium-Carbdiyne: A 3D Well-Defined sp-Hybridized Carbon-Based Material with Superhigh Li Storage Property 被引量:1
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作者 Ze Yang Xin Ren +6 位作者 Yuwei Song Xiaodong Li Chunfang Zhang Xiuli Hu Jianjiang He Jiazhu Li Changshui Huang 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第1期199-206,共8页
Carbyne delivers various excellent properties for the existence of the larger number of sp-hybridized carbon atoms.Here,a 3D well-defined porous carbon material germanium-carbdiyne(Ge-CDY)which is comprised of only sp... Carbyne delivers various excellent properties for the existence of the larger number of sp-hybridized carbon atoms.Here,a 3D well-defined porous carbon material germanium-carbdiyne(Ge-CDY)which is comprised of only sp-hybridized carbon atoms bridging by Ge atoms has been developed and investigated.The unique diamond-like structure constructed by linear butadiyne bonds and sp 3-hybridized Ge atoms ensures the stability of Ge-CDY.The large percentage of conjugated alkyne bonds composed of sp-C guarantees the good conductivity and the low band gap,which were further confirmed experimentally and theoretically,endowing Ge-CDY with the potential in electrochemical applications.The well-defined 3D carbon skeleton of Ge-CDY provides abundant uniform nanopores,which is suitable for metal ions storage and diffusion.Further half-cell evaluation also demonstrated Ge-CDY exhibited an excellent performance in lithium storage.All those indicating sp-hybridized carbon-based materials can exhibit great potential to possess excellent properties and be applied in the field of energy,electronic,and so on. 展开更多
关键词 3D porous material electrochemical energy storage germanium-carbdiyne lithium storage theoretical predictions
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MgF_(2)掺杂对0.95MgTiO_(3)-0.05CaTiO_(3)陶瓷结构与微波性能的影响
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作者 冉文 刘凡 +1 位作者 李昊 刘绍军 《粉末冶金材料科学与工程》 2023年第3期253-261,共9页
采用传统固相合成法制备Mg F_(2)掺杂0.95MgTiO_(3)-0.05CaTiO_(3)(95MCT)微波陶瓷,结合X射线衍射谱、拉曼光谱、X射线光电子能谱、扫描电镜及矢量网络分析等表征技术,系统研究Mg F_(2)掺杂对95MCT陶瓷烧结温度、晶体结构、微观形貌与... 采用传统固相合成法制备Mg F_(2)掺杂0.95MgTiO_(3)-0.05CaTiO_(3)(95MCT)微波陶瓷,结合X射线衍射谱、拉曼光谱、X射线光电子能谱、扫描电镜及矢量网络分析等表征技术,系统研究Mg F_(2)掺杂对95MCT陶瓷烧结温度、晶体结构、微观形貌与微波性能的影响。结果表明:少量Mg F_(2)掺杂能够促进陶瓷晶粒均匀生长,抑制Ti^(4+)离子向Ti^(3+)离子转变,增强[TiO_(6)]八面体中Ti—O键的结合强度,从而使95MCT陶瓷的品质因子由30 335 GHz提高至89 470 GHz。1 225℃烧结的Mg F_(2)质量分数为1%的95MCT陶瓷具有优异的综合微波性能:相对介电常数ε_(r)约为19.74,品质因子Q×f值约为89 470 GHz,谐振频率温度系数τ_(f)约为-10.2×10^(-6)℃^(-1)。 展开更多
关键词 MgTiO_(3)-catio_(3)陶瓷 MgF_(2)掺杂 [TiO_(6)]八面体 烧结温度 微波性能
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以CaTiO_(3):Pr^(3+)为发光功能元的红色长余辉有机柔性薄膜的制备及光学性能研究
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作者 黄春雷 陈鸿华 +2 位作者 郑晓玉 程子航 张文妍 《科技与创新》 2023年第7期13-15,20,共4页
采用CaTiO_(3):Pr^(3+)红色长余辉发光材料为发光功能元,以绿色环保型高分子材料聚乙烯醇PVA为基体,通过共混法,引入石墨烯和Ag纳米颗粒,制备了红色长余辉有机柔性薄膜,运用SEM(扫描电子显微镜)、XRD(X射线衍射)、PL(光致发光)等多种分... 采用CaTiO_(3):Pr^(3+)红色长余辉发光材料为发光功能元,以绿色环保型高分子材料聚乙烯醇PVA为基体,通过共混法,引入石墨烯和Ag纳米颗粒,制备了红色长余辉有机柔性薄膜,运用SEM(扫描电子显微镜)、XRD(X射线衍射)、PL(光致发光)等多种分析测试方法,对红色长余辉发光薄膜的结构及性能进行表征,同时,还研究了Ag纳米颗粒的引入对红色长余辉柔性薄膜材料发光性能的影响。研究结果表明,由于CaTiO_(3):Pr^(3+)和Ag之间的能量转移,Ag颗粒在减弱柔性薄膜的红色余辉的同时,延长了其荧光寿命。 展开更多
关键词 红色长余辉 柔性薄膜 catio_(3):Pr^(3+) 光学性能
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Mg_(3)Y_(2)Ge_(3)O_(12)∶Pr^(3+)材料的多色发光及余辉性能
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作者 郭海洁 张涛 +4 位作者 时秋峰 乔建伟 崔彩娥 黄平 王磊 《发光学报》 EI CAS CSCD 北大核心 2024年第3期424-433,共10页
采用高温固相法制备了一种具有颜色变化的长余辉发光材料Mg_(3)Y_(2)Ge_(3)O_(12)∶Pr^(3+)。通过X射线衍射、激发发射光谱、余辉衰减及热释光曲线等,对样品的结构、发光及余辉性能进行了系统分析。在283 nm激发下,发射光谱在485 nm和60... 采用高温固相法制备了一种具有颜色变化的长余辉发光材料Mg_(3)Y_(2)Ge_(3)O_(12)∶Pr^(3+)。通过X射线衍射、激发发射光谱、余辉衰减及热释光曲线等,对样品的结构、发光及余辉性能进行了系统分析。在283 nm激发下,发射光谱在485 nm和609 nm处表现出两个较强的尖峰发射,分别归属于Pr^(3+)离子的^(3)P_(2)→^(3)H_(4)及^(3)P_(0)→3H6能级跃迁。通过对Pr^(3+)离子浓度的调控,有效改变了绿光和红光的相对发射强度,从而实现了发光颜色的多色化。此外,在激发光源停止后该材料同样具有多色的余辉发射,对于最佳样品(Mg_(3)Y_(2)Ge_(3)O_(12)∶0.015Pr^(3+))的余辉时间可达1200 s以上。之后,我们通过热释光曲线具体研究了陷阱的分布及余辉的充放能过程。结果表明,Mg_(3)Y_(2)Ge_(3)O_(12)∶0.015Pr^(3+)材料中浅陷阱的浓度相对较低从而导致室温下的余辉性能较弱。由于材料在高温区域具有超宽带陷阱分布,因此,我们进一步探究了其在高温下的多色长余辉性能。在本工作中,我们成功制备了一种单一离子激活的发光及余辉颜色可调的长余辉发光材料,考虑到其在室温以及高温条件下都具有发光及余辉颜色变化的特点,该材料在高温预警标识以及防伪领域有着潜在的应用价值。 展开更多
关键词 长余辉发光材料 Mg_(3)Y_(2)Ge_(3)O_(12)∶Pr^(3+) 多色化 防伪
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g-C_(3)N_(4)基S型异质结的构建及其光催化性能研究
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作者 申建宇 刘成宝 +5 位作者 郑磊之 陈丰 钱君超 邱永斌 孟宪荣 陈志刚 《功能材料》 CAS CSCD 北大核心 2024年第1期1077-1085,1097,共10页
为了解决日益严重的环境污染和能源短缺等问题,基于半导体的光催化技术利用太阳能为环境修复和能源储存提供了一种“绿色”可持续的方案。首先介绍了g-C_(3)N_(4)的优点和局限性,以及S型半导体的优势与不足,接着介绍了g-C_(3)N_(4)基S... 为了解决日益严重的环境污染和能源短缺等问题,基于半导体的光催化技术利用太阳能为环境修复和能源储存提供了一种“绿色”可持续的方案。首先介绍了g-C_(3)N_(4)的优点和局限性,以及S型半导体的优势与不足,接着介绍了g-C_(3)N_(4)基S型异质结的电子结构和光催化性质,综述了基于不同类型g-C_(3)N_(4)的S型异质结光催化材料构建和光催化性能的提升策略,并梳理了其部分应用。最后,综述了基于g-C_(3)N_(4)的S型异质结面临的挑战和未来发展趋势,有望为g-C_(3)N_(4)基S型异质结光催化材料的开发和实际应用提供重要的参考。 展开更多
关键词 g-C_(3)N_(4) S型异质结 光催化 复合材料
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Residual Stress Distribution of Si_(3)N_(4)/SiC Gradient Material and the Effect of Residual Stress on Material Properties
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作者 赵东升 JING Qiang +1 位作者 SUN Jianwei 张金咏 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第4期759-765,共7页
The Si_(3)N_(4)/SiC gradient material with a gradient composition structure was prepared by a hot pressing sintering.The sinterability,distribution of residual stress and the effect of residual stress on mechanical pr... The Si_(3)N_(4)/SiC gradient material with a gradient composition structure was prepared by a hot pressing sintering.The sinterability,distribution of residual stress and the effect of residual stress on mechanical properties of Si_(3)N_(4)/SiC gradient materials were studied.The research results show that,at 1750℃,Si_(3)N_(4)/SiC gradient materials with different ratios can achieve co-sintering,and the overall relative density of the sample reaches 98.5%.Interestingly,the flexural strength of Si_(3)N_(4)/SiC gradient material is related to its loading surface.The flexural strength of SiC as the loading surface is about 35%higher than that of Si_(3)N_(4)as the loading surface.The analysis of the residual stress of the material in the gradient structure shows that the gradient stress distribution between the two phases is a vital factor affecting the mechanical properties of the material.With the increase of SiC content in the gradient direction,the fracture toughness of each layer of Si_(3)N_(4)/SiC gradient materials gradually decreases.The surface hardness of the pure SiC side is lower than that reported in other literature. 展开更多
关键词 Si_(3)N_(4) SIC gradient material residual stress mechanical properties
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CoSnO_(3)/C nanocubes with oxygen vacancy as high-capacity cathode materials for rechargeable aluminum batteries
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作者 Shuainan Guo Mingquan Liu +3 位作者 Haoyi Yang Xin Feng Ying Bai Chuan Wu 《Green Energy & Environment》 SCIE EI CAS CSCD 2023年第3期883-892,共10页
Rechargeable aluminum batteries(RABs)are attractive cadidates for next-generation energy storage and conversion,due to the low cost and high safety of Al resources,and high capacity of metal Al based on the three-elec... Rechargeable aluminum batteries(RABs)are attractive cadidates for next-generation energy storage and conversion,due to the low cost and high safety of Al resources,and high capacity of metal Al based on the three-electrons reaction mechanism.However,the development of RABs is greatly limited,because of the lack of advanced cathode materials,and their complicated and unclear reaction mechanisms.Exploring the novel nanostructured transition metal and carbon composites is an effective route for obtaining ideal cathode materials.In this work,we synthesize porous CoSnO_(3)/C nanocubes with oxygen vacancies for utilizing as cathodes in RABs for the first time.The intrinsic structure stability of the mixed metal cations and carbon coating can improve the cycling performance of cathodes by regulating the internal strains of the electrodes during volume expansion.The nanocubes with porous structures contribute to fast mass transportation which improves the rate capability.In addition to this,abundant oxygen vacancies promote the adsorption affinity of cathodes,which improves storage capacity.As a result,the CoSnO_(3)/C cathodes display an excellent reversible capacity of 292.1 mAh g^(-1) at 0.1 A g^(-1),a good rate performance with 109 mAh g^(-1) that is maintained even at 1 A g^(-1) and the provided stable cycling behavior for 500 cycles.Besides,a mechanism of intercalation of Al^(3+)within CoSnO_(3)/C cathode is proposed for the electrochemical process.Overall,this work provides a step toward the development of advanced cathode materials for RABs by engineering novel nanostructured mixed transition-metal oxides with carbon composite and proposes novel insights into chemistry for RABs. 展开更多
关键词 Rechargeable aluminum batteries Mixed transition-metal oxides CoSnO_(3)/C Cathode material Oxygen vacancy
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基于生物质衍生α-Fe_(2)O_(3)的丙酮气体传感器实验研究
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作者 郭路路 赵姝姝 +3 位作者 杨桂茂 徐军 张旭光 杨志民 《传感器与微系统》 CSCD 北大核心 2024年第1期29-32,共4页
研制具有高灵敏度、低检测限的丙酮气体传感器对于工业生产安全和人体疾病诊断具有重要意义。本文以生物质脱脂棉为模板,采用金属盐溶液浸泡法和空气中煅烧处理相结合的策略制备了α-Fe_(2)O_(3)微米管,然后采用X射线衍射仪、热重分析... 研制具有高灵敏度、低检测限的丙酮气体传感器对于工业生产安全和人体疾病诊断具有重要意义。本文以生物质脱脂棉为模板,采用金属盐溶液浸泡法和空气中煅烧处理相结合的策略制备了α-Fe_(2)O_(3)微米管,然后采用X射线衍射仪、热重分析仪、扫描电子显微镜(SEM)对α-Fe_(2)O_(3)的物相组成与表面形貌进行表征。所制备的α-Fe_(2)O_(3)传感器表现出优异的丙酮传感性能,包括高响应(192.51%@20×10^(-6)),低检测限(1×10^(-6)),优异的重复性和选择性,并分析传感器的敏感机制。该工作不仅为多孔金属氧化物材料的简便设计提供了方案,而且在构建用于高性能丙酮气体检测系统方面具有应用潜力。 展开更多
关键词 丙酮气体传感器 生物质模板 多孔材料 α-Fe_(2)O_(3)
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Ni-Al辅助微波自蔓延烧结制备Ti_(3)SiC_(2)基金刚石复合材料工艺研究
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作者 史书浩 杨黎 +3 位作者 郭胜惠 高冀芸 侯明 鲁元佳 《金刚石与磨料磨具工程》 CAS 北大核心 2024年第1期22-30,共9页
为降低金刚石磨削工具的制造成本和能耗,探寻一种在低能耗下实现高性能陶瓷结合剂金刚石磨具的制备工艺,同时研究助燃剂Si和金刚石粒度等因素对样品物相组成、显微形貌和磨削性能的影响。采用Ti、Si、石墨粉和金刚石磨料作为原料,经冷... 为降低金刚石磨削工具的制造成本和能耗,探寻一种在低能耗下实现高性能陶瓷结合剂金刚石磨具的制备工艺,同时研究助燃剂Si和金刚石粒度等因素对样品物相组成、显微形貌和磨削性能的影响。采用Ti、Si、石墨粉和金刚石磨料作为原料,经冷压成型至生胚,通过Ni-Al辅助在微波场加热诱发Ti-Si-C体系发生自蔓延高温合成(SHS)反应以制备Ti_(3)SiC_(2)基金刚石复合材料。结果表明,高热值Ni-Al合金辅助可以缩短样品的烧结时间,还可以将诱发SHS反应的温度点控制在金刚石石墨化温度以下。在Ar保护气氛下,Ti-Si-C体系发生SHS反应,可生成Ti_(3)SiC_(2)、TiC和Ti5Si3等3种物相。随Si含量升高,Ti_(3)SiC_(2)相先增多后减少,当n(Ti):n(Si):n(C)=3∶1.1∶2时,复合材料的磨削性能最佳,磨耗比最高可达286.53。分析不同原料配比下的试样磨耗比差异的产生机制,认为基体组织中存在微小且分布均匀的气孔结构,在磨削时可产生大区域的平整磨削面,易于发挥金刚石磨料的磨削效果,有利于提升复合材料样品的磨削性能。 展开更多
关键词 微波自蔓延烧结 Ti_(3)SiC_(2) 金刚石复合材料 NI-AL合金
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