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原子层沉积Al_(2)O_(3)对尖晶石LiNi_(0.5)Mn_(1.5)O_(4)正极材料的影响机理
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作者 李倩 赵妍 +8 位作者 崔雅茹 王硕然 黄娜 李常林 王文培 马红周 杜金晶 何喜红 翁雅青 《矿冶工程》 CAS 北大核心 2024年第4期8-12,共5页
为提升尖晶石相LiNi_(0.5)Mn_(1.5)O_(4)正极材料在深度荷电状态下的界面稳定性,采用原子层沉积法在单晶LiNi_(0.5)Mn_(1.5)O_(4)正极材料表面可控沉积了纳米级Al_(2)O_(3)层。改性后的LiNi_(0.5)Mn_(1.5)O_(4)正极材料表现出优异的长... 为提升尖晶石相LiNi_(0.5)Mn_(1.5)O_(4)正极材料在深度荷电状态下的界面稳定性,采用原子层沉积法在单晶LiNi_(0.5)Mn_(1.5)O_(4)正极材料表面可控沉积了纳米级Al_(2)O_(3)层。改性后的LiNi_(0.5)Mn_(1.5)O_(4)正极材料表现出优异的长循环耐腐蚀性能(1C电流密度下循环500次的容量保持率高达94.7%)。进一步的表界面解析结果表明:原子层沉积技术构建的纳米级Al_(2)O_(3)包覆层能够明显抑制材料本体与电解液的腐蚀反应,降低过渡金属离子的不可逆溶解与析出;另外,基于HF表面刻蚀产生的AlF_(3)具有增强的耐刻蚀性能,可显著提升LiNi_(0.5)Mn_(1.5)O_(4)正极材料在长循环及高电压下的服役性能。 展开更多
关键词 锂离子电池 LiNi_(0.5)Mn_(1.5)O_(4) 正极材料 原子层沉积 al_(2)O_(3) 表面改性
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Al_(2)(SO_(4))_(3)催化热解油转化生产酯类燃料
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作者 罗丹 夏淑倩 +4 位作者 郭丽潇 韩建荣 蒋可为 郝全爱 李娇 《河北科技大学学报》 CAS 北大核心 2024年第3期283-289,共7页
酸类、糖类等不稳定组分的存在是制约热解油直接用作生物燃料的主要因素。为了解决此问题,提出采用Al_(2)(SO_(4))_(3)催化剂将这些不稳定成分酯化为燃料类化合物的途径。首先,分别以单模型化合物左旋葡萄糖或乙酸为原料,考察各种金属... 酸类、糖类等不稳定组分的存在是制约热解油直接用作生物燃料的主要因素。为了解决此问题,提出采用Al_(2)(SO_(4))_(3)催化剂将这些不稳定成分酯化为燃料类化合物的途径。首先,分别以单模型化合物左旋葡萄糖或乙酸为原料,考察各种金属硫酸盐催化其转化制备乙酰丙酸乙酯或乙酸乙酯的能力,筛选出催化性能最好的催化剂;其次,以左旋葡萄糖和乙酸的模型混合物为原料,探究Al_(2)(SO_(4))_(3)催化同时转化制备酯类的最佳反应条件;最后,以真实热解油为原料,验证Al_(2)(SO_(4))_(3)在最佳反应条件下催化酯化的可行性。结果表明,酯化后热解油中大部分酸、糖、醛消失,同时产生大量的酯和缩醛,酯类和缩醛类占改性热解油总色谱面积的39.5%。Al_(2)(SO_(4))_(3)能有效将热解油中的酸类、糖类等不稳定组分酯化为燃料类化合物,可为热解油转化制备生物燃料提供借鉴。 展开更多
关键词 催化化学 热解油 乙酰丙酸乙酯 乙酸乙酯 al_(2)(SO_(4))_(3)
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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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La^(3+)对MgAl_(2)O_(4)透明陶瓷致密化过程、光学及力学性能的影响
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作者 邢钰培 刘鹏 +4 位作者 韩丹 章健 王俊 马杰 徐晓东 《硅酸盐通报》 CAS 北大核心 2024年第3期1048-1057,共10页
镁铝尖晶石(MgAl_(2)O_(4))透明陶瓷具有优异的光学和力学性能,在防弹装甲窗口、高马赫整流罩等方面得到了大量的应用。为实现MgAl_(2)O_(4)透明陶瓷的致密化,一般需要相对较高的烧结温度,然而高的烧结温度会导致陶瓷晶粒生长过大,影响... 镁铝尖晶石(MgAl_(2)O_(4))透明陶瓷具有优异的光学和力学性能,在防弹装甲窗口、高马赫整流罩等方面得到了大量的应用。为实现MgAl_(2)O_(4)透明陶瓷的致密化,一般需要相对较高的烧结温度,然而高的烧结温度会导致陶瓷晶粒生长过大,影响其性能。因此通过引入合适的烧结助剂降低烧结温度,对于提升陶瓷性能和降低成本均具有很大的意义。本文以高纯商业MgAl_(2)O_(4)粉体为原料,La(OH)_(3)为烧结助剂,采用真空烧结结合热等静压后处理的方式,成功制备MgAl_(2)O_(4)透明陶瓷,并采用XRD、SEM等对透明陶瓷的微结构和相组成的演变以及性能进行表征。结果表明,La^(3+)在烧结早中期可有效提高陶瓷致密化速率,在烧结后期可抑制陶瓷晶粒生长。掺入0.01%(质量分数)La_(2)O_(3)后,MgAl_(2)O_(4)光学和力学综合性能优异,所需的热等静压烧结温度由1650℃降低到1600℃,相应平均晶粒尺寸由7μm减小到3μm。 展开更多
关键词 Mgal_(2)O_(4) La^(3+) 透明陶瓷 烧结助剂 微结构 致密化
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非甲烷总烃分析仪专用Co_(3)O_(4)/Al_(2)O_(3)催化剂的制备及性能研究
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作者 谭聚 杨琴琴 何瑜 《湖北大学学报(自然科学版)》 CAS 2024年第3期347-355,共9页
挥发性有机化合物(volatile organic compounds,VOCs)是引发霾和光化学烟雾等环境问题的重要原因,达到一定浓度会对人类健康造成威胁。非甲烷总烃(non-methane hydrocarbon,NMHC)作为VOCs总量统计的重要指标,在一定程度上可以简单、直... 挥发性有机化合物(volatile organic compounds,VOCs)是引发霾和光化学烟雾等环境问题的重要原因,达到一定浓度会对人类健康造成威胁。非甲烷总烃(non-methane hydrocarbon,NMHC)作为VOCs总量统计的重要指标,在一定程度上可以简单、直观地反映VOCs污染状况,因此,监控NMHC对保护环境与人类健康具有重要意义。本文中制备了层状结构、球形结构和立方体结构3种不同形貌的Co_(3)O_(4)纳米材料,将纳米材料均匀负载于活性Al_(2)O_(3)颗粒表面作为NMHC分析专用催化剂。通过XRD、FESEM、BET和XPS技术对制备的Co_(3)O_(4)催化剂进行表征;并将催化剂用于NMHC的检测,对不同形貌催化剂的催化性能进行评价。结果表明,当煅烧温度为400℃、煅烧时间为3 h,催化剂具有较高的催化活性,其中立方体结构催化剂具有最高的催化活性,能在236℃将NMHC完全降解,层状结构与球形结构催化剂分别在261℃与257℃将NMHC完全降解。升高煅烧温度有助于催化活性的提高,因为煅烧温度的升高增大了催化剂中Co_(3)O_(4)的相对结晶度与O_(ads)/O_(latt)摩尔比,使得气体转移速度加快,因而使催化剂具有更高的催化活性。催化剂经过耐水性、热失重测试与催化循环测试后仍能保持较高的催化活性。 展开更多
关键词 Co_(3)O_(4)/al_(2)O_(3)催化剂 非甲烷总烃 色谱-催化氧化法 形貌
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Tb^(3+)、Eu^(3+)离子共掺杂的MgAl_(2)O_(4)发光性能研究
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作者 钱珂旭 史忠祥 王晶 《大连交通大学学报》 CAS 2024年第4期95-100,共6页
采用水热辅助固相法,以Al(NO_(3))_(3)·9H_(2)O和Mg(NO_(3))_(2)·6H_(2)O为原料,尿素为沉淀剂,制备了Tb^(3+)、Eu^(3+)共掺杂镁铝尖晶石荧光粉。用X射线衍射、扫描电子显微镜对所得产物的相结构和形貌予以表征,结合荧光激发... 采用水热辅助固相法,以Al(NO_(3))_(3)·9H_(2)O和Mg(NO_(3))_(2)·6H_(2)O为原料,尿素为沉淀剂,制备了Tb^(3+)、Eu^(3+)共掺杂镁铝尖晶石荧光粉。用X射线衍射、扫描电子显微镜对所得产物的相结构和形貌予以表征,结合荧光激发、发射光谱和CIE色度图分析了荧光粉的光致发光性能。结果表明:在一定浓度范围内,掺杂Tb3+和Eu^(3+)离子后基质MgAl_(2)O_(4)的晶体结构并未发生改变,而当引入沉淀剂后,获得了具有良好分散性的棒状颗粒,且Tb^(3+)与Eu^(3+)间的浓度变化对样品形貌的影响甚微。在此基础上,以377 nm近紫外光作为激发光源实现了可见光区由粉至红的多色可调谐发射。 展开更多
关键词 水热辅助固相法 Mgal_(2)O_(4) Tb^(3+)/Eu^(3+) 发光性能
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大尺寸优质Cr^(3+)∶BeAl_(2)O_(4)晶体生长与性能研究
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作者 王鸿雁 王世武 +5 位作者 聂奕 张行愚 张芳 许辉 李瑞茂 匡永飞 《人工晶体学报》 CAS 北大核心 2024年第6期947-952,共6页
本文采用感应加热提拉法结合上称重自动控径技术,成功生长出大尺寸、高质量的翠绿宝石(Cr^(3+)∶BeAl_(2)O_(4))晶体。晶坯等径圆柱体尺寸达到ϕ70 mm×140 mm,晶坯质量超过2800 g。通过冷光源照射晶坯,发现晶坯中心区域ϕ10~15 mm存... 本文采用感应加热提拉法结合上称重自动控径技术,成功生长出大尺寸、高质量的翠绿宝石(Cr^(3+)∶BeAl_(2)O_(4))晶体。晶坯等径圆柱体尺寸达到ϕ70 mm×140 mm,晶坯质量超过2800 g。通过冷光源照射晶坯,发现晶坯中心区域ϕ10~15 mm存在气泡。采用5 mW绿光激光照射ϕ8 mm×130 mm的翠绿宝石晶体棒,晶体内部无散射颗粒。利用Zygo激光平面干涉仪对晶体棒进行测试,波前畸变为0.3λ@632.8 nm。用电感耦合等离子体原子发射光谱法测定了翠绿宝石晶体的铬离子掺杂浓度,并计算出轴向浓度梯度为0.5×10^(-4)~1.9×10^(-4)cm^(-1)(摩尔分数)。用Perkin Elmer Lambda-950紫外可见近红外分光光度计测试了不同掺杂浓度的翠绿宝石晶体在室温下的吸收光谱,并计算了吸收系数。这些研究结果为翠绿宝石晶体的应用提供了重要的基础数据。 展开更多
关键词 翠绿宝石(Cr^(3+)∶Beal_(2)O_(4))晶体 提拉法 自动控径技术 波前畸变 浓度梯度 吸收系数
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无压烧结制备Y_(2)MgAl_(4)SiO_(12)∶Ce^(3+)荧光陶瓷及光学性能
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作者 王靖涛 王茗 +3 位作者 王森宇 徐祖盛 梁莹盈 张瑞 《发光学报》 EI CAS CSCD 北大核心 2024年第3期434-442,共9页
Y_(3)Al_(5)O_(12)∶Ce^(3+)荧光粉是目前白光LED的主要发光材料,但在使用时存在封装树脂因散热不佳而发生老化等问题。本文采用无压烧结制备了Y_(2)MgAl_(4)SiO_(12)∶Ce^(3+)透明陶瓷荧光体,用于替代荧光粉体和调控发光性能。首先通... Y_(3)Al_(5)O_(12)∶Ce^(3+)荧光粉是目前白光LED的主要发光材料,但在使用时存在封装树脂因散热不佳而发生老化等问题。本文采用无压烧结制备了Y_(2)MgAl_(4)SiO_(12)∶Ce^(3+)透明陶瓷荧光体,用于替代荧光粉体和调控发光性能。首先通过化学共沉淀法制备前驱体粉体,经高温煅烧后采用冷等静压成型,最后在马弗炉中1 600℃煅烧制得透明荧光陶瓷。研究了Ce^(3+)掺杂浓度和样品厚度对材料性能的影响,其中掺杂量为0.5%的样品在800 nm处具有56%的透过率,在450 K下发光强度仍能保持室温强度的84%。与蓝光芯片组装成器件测试表明,荧光陶瓷在蓝光LEDs/LDs的激发下发出白光,其CIE色度坐标分别为(0.307 6,0.332 9)和(0.308 0,0.331 6),光效分别为62.6 lm/W和146.3 lm/W。研究结果表明,YMAS∶Ce荧光陶瓷可应用于白光LEDs/LDs领域。 展开更多
关键词 无压烧结 Y_(2)Mgal_(4)SiO_(12)∶Ce^(3+) 荧光陶瓷 白光LEDs/LDs
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N-doped graphene quantum dot-decorated N-TiO2/P-doped porous hollow g-C_(3)N_(4) nanotube composite photocatalysts for antibiotic photodegradation and H2 production 被引量:2
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作者 Jingshu Yuan Yao Zhang +2 位作者 Xiaoyan Zhang Junjie Zhang Shen’gen Zhang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CSCD 2024年第1期165-178,共14页
Exclusive responsiveness to ultraviolet light (~3.2 eV) and high photogenerated charge recombination rate are the two primary drawbacks of pure TiO_(2). We combined N-doped graphene quantum dots (N-GQDs), morphology r... Exclusive responsiveness to ultraviolet light (~3.2 eV) and high photogenerated charge recombination rate are the two primary drawbacks of pure TiO_(2). We combined N-doped graphene quantum dots (N-GQDs), morphology regulation, and heterojunction construction strategies to synthesize N-GQD/N-doped TiO_(2)/P-doped porous hollow g-C_(3)N_(4) nanotube (PCN) composite photocatalysts (denoted as G-TPCN). The optimal sample (G-TPCN doped with 0.1wt% N-GQD, denoted as 0.1% G-TPCN) exhibits significantly enhanced photoabsorption, which is attributed to the change in bandgap caused by elemental doping (P and N), the improved light-harvesting resulting from the tube structure, and the upconversion effect of N-GQDs. In addition, the internal charge separation and transfer capability of0.1% G-TPCN are dramatically boosted, and its carrier concentration is 3.7, 2.3, and 1.9 times that of N-TiO_(2), PCN, and N-TiO_(2)/PCN(TPCN-1), respectively. This phenomenon is attributed to the formation of Z-scheme heterojunction between N-TiO_(2) and PCNs, the excellent electron conduction ability of N-GQDs, and the short transfer distance caused by the porous nanotube structure. Compared with those of N-TiO_(2), PCNs, and TPCN-1, the H2 production activity of 0.1%G-TPCN under visible light is enhanced by 12.4, 2.3, and 1.4times, respectively, and its ciprofloxacin (CIP) degradation rate is increased by 7.9, 5.7, and 2.9 times, respectively. The optimized performance benefits from excellent photoresponsiveness and improved carrier separation and migration efficiencies. Finally, the photocatalytic mechanism of 0.1% G-TPCN and five possible degradation pathways of CIP are proposed. This study clarifies the mechanism of multiple modification strategies to synergistically improve the photocatalytic performance of 0.1% G-TPCN and provides a potential strategy for rationally designing novel photocatalysts for environmental remediation and solar energy conversion. 展开更多
关键词 N-doped TiO_(2) N-doped graphene quantum dots P-doped g-C_(3)N_(4) porous hollow nanotube heterojunction photocatalysis
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固体酸SO_(4)^(2-)-/ZrO_(2)-γ-Al_(2)O_(3)的制备及其催化合成癸二酸二辛酯的研究
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作者 张兴福 贾太轩 梁寒 《江西化工》 CAS 2024年第2期53-57,共5页
本研究采用沉淀-浸渍法制备了SO_(4)^(2-)/ZrO_(2)-γ-Al_(2)O_(3)固体酸催化剂,以癸二酸和异辛醇的酯化反应为探针反应,确定了SO_(4)^(2-)/ZrO_(2)-γ-Al_(2)O_(3)固体酸催化剂的最佳制备条件。实验分别考察了焙烧温度、焙烧时间、硫... 本研究采用沉淀-浸渍法制备了SO_(4)^(2-)/ZrO_(2)-γ-Al_(2)O_(3)固体酸催化剂,以癸二酸和异辛醇的酯化反应为探针反应,确定了SO_(4)^(2-)/ZrO_(2)-γ-Al_(2)O_(3)固体酸催化剂的最佳制备条件。实验分别考察了焙烧温度、焙烧时间、硫酸浸渍浓度、硫酸浸渍时间、陈化温度对催化活性的影响,并进一步考察了催化剂的循环使用性能。结果表明:焙烧温度为600℃、焙烧时间为5 h、硫酸浸渍浓度为0.6 mol/L、硫酸浸渍时间为9 h、陈化温度为-20℃时,制备出的SO_(4)^(2-)/ZrO_(2)-γ-Al_(2)O_(3)固体酸催化剂具有较好的催化活性,癸二酸的酯化率可以达到99.66%,催化剂循环使用5次后,酯化率降至90.54%。 展开更多
关键词 沉淀-浸渍法 SO_(4)^(2-)/ZrO_(2)-γ-al_(2)O_(3) 酯化 催化剂 癸二酸二辛酯
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Co_(3)O_(4)/TiO_(2) composite photocatalyst:Preparation and synergistic degradation performance of toluene
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作者 ZHOU Fei JIA Xiaolin 《无机化学学报》 SCIE CAS CSCD 北大核心 2024年第11期2232-2240,共9页
TiO_(2) nanobelts and Co_(3)O_(4)/TiO_(2) catalytic materials were prepared using the hydrothermal method.The cat-alyst was characterized by X-ray diffraction,scanning electron microscopy,transmission electron microsc... TiO_(2) nanobelts and Co_(3)O_(4)/TiO_(2) catalytic materials were prepared using the hydrothermal method.The cat-alyst was characterized by X-ray diffraction,scanning electron microscopy,transmission electron microscopy,X-ray electron spectroscopy,and fluorescence spectroscopy.At room temperature,with a relative humidity of 50.0%,the total gas flow rate of 1.0 L·min-1,the space velocity of 1.05×10^(4) h^(-1),and toluene volume concentration of 25.0µL·L^(-1),two 6 W vacuum ultraviolet lamps were used as light sources to catalyze,degrade,and mineralize toluene.The results show that the prepared catalyst is in the shape of nano-ribbons.The loading of Co_(3)O_(4) inhibits the recombina-tion of photogenerated electrons and holes and can effectively improve the catalytic performance.The Co_(3)O_(4)/TiO_(2) with a load of 6.0%Co_(3)O_(4) has the best catalytic effect.When N2 was used as a carrier gas,the degradation rate of tol-uene was only 34.7%.The toluene degradation is mainly due to the photolysis of vacuum ultraviolet light.When air was used as a carrier gas,O_(3) was produced.The Co_(3)O_(4)/TiO_(2) with a load of 6.0%and vacuum ultraviolet synergistical-ly promote toluene degradation.The highest degradation rate of toluene was 91.7%and the mineralization rate was 74.6%.The degradation rate of toluene was 2.6 times that of nitrogen as a carrier gas. 展开更多
关键词 vacuum ultraviolet photocatalysis TOLUENE DEGRADATION Co_(3)O_(4)/TiO_(2)
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LaNbO_(4)掺杂对Na-β"-Al_(2)O_(3)固态电解质性能的改善
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作者 张万星 刘立敏 +3 位作者 周晓亮 徐瑶 郭炜琳 张硕 《陶瓷学报》 CAS 北大核心 2024年第4期696-702,共7页
离子导体陶瓷材料的高断裂强度和优异热稳定性对于解决目前困扰碱金属电池发展的热失控问题具有重要意义,但其在室温下表现出的较高离子传输阻力限制了全固态电池的实际性能。以Na-β"-Al_(2)O_(3)(SBA)这一具备独特层状二维Na^(+... 离子导体陶瓷材料的高断裂强度和优异热稳定性对于解决目前困扰碱金属电池发展的热失控问题具有重要意义,但其在室温下表现出的较高离子传输阻力限制了全固态电池的实际性能。以Na-β"-Al_(2)O_(3)(SBA)这一具备独特层状二维Na^(+)传导结构的离子导体陶瓷为研究对象,通过合成具备“微弹性”特点的LaNbO_(4)陶瓷作为第二相来对SBA的晶粒间隙进行填充修饰,以改善SBA在室温下的离子传导性能。结果表明,0.50 wt.%的LaNbO_(4)掺入量对SBA的提升效果最佳,修饰后的SBA室温离子电导率达到了2.061 mS·cm^(-1)。对应的活化能也从纯相SBA的0.1714 eV降低到了0.1545 eV。陶瓷横截面的SEM图像表明,合适比例的LaNbO_(4)掺入不仅提高了SBA的烧结致密度,也改善了SBA的晶体生长趋势,因此修饰后的SBA的阻抗值发生了降低。在室温全固态对称钠电池的恒流循环实验中,使用掺杂SBA组装的对称电池能够以更低的电压运行也从实验层面上印证了上述观点。 展开更多
关键词 离子导体陶瓷 全固态电池 Na-β"-al_(2)O_(3) LaNbO_(4) 掺杂修饰
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MgCO_(3)分子的解离产物合成MgAl_(2)O_(4)分子
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作者 崔金玉 任海林 +4 位作者 赵帅 程佥千 蒋倩云 王丽 王飞 《原子与分子物理学报》 北大核心 2024年第5期22-28,共7页
本研究碳酸镁MgCO_(3)分子的解离过程及其解离产物与三氧化二铝Al_(2) O_(3)合成MgAl_(2)O_(4)的微观过程.利用Gaussian 09软件采用CCSD(T)6-311++G(d,p)和M06-2x/6-311++G(d,p)方法分别计算反应物碳酸镁MgCO_(3)分子单点能和频率,并计... 本研究碳酸镁MgCO_(3)分子的解离过程及其解离产物与三氧化二铝Al_(2) O_(3)合成MgAl_(2)O_(4)的微观过程.利用Gaussian 09软件采用CCSD(T)6-311++G(d,p)和M06-2x/6-311++G(d,p)方法分别计算反应物碳酸镁MgCO_(3)分子单点能和频率,并计算反应物受热分解的过程,寻找解离的过渡态.并通过高温烧结法,在实验室用MgCO_(3)和Al_(2) O_(3)粉末为原料,1450℃合成铝酸镁MgAl_(2)O_(4),通过X-ray diffraction即XRD测试表征实验产物与理论计算是一致的. 展开更多
关键词 碳酸镁MgCO_(3) 三氧化二铝al_(2)O_(3) 铝酸镁Mgal_(2)O_(4) 解离 过渡态
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Al_(2) O_(3)-MgAl_(2) O_(4)复相骨料对刚玉-尖晶石浇注料抗渣性能的影响
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作者 王志强 徐国涛 +6 位作者 雷中兴 彭肖仟 郑吉红 刘黎 王心一 刘毅 徐炎明 《耐火材料》 CAS 北大核心 2024年第1期63-67,共5页
为研究Al_(2)O_(3)-MgAl_(2)O_(4)复相骨料对刚玉-尖晶石浇注料抗渣性能的影响,在基质中添加与不添加尖晶石细粉的2种情况下,分别以板状刚玉骨料和Al_(2)O_(3)-MgAl_(2)O_(4)复相骨料制备了刚玉-尖晶石浇注料。先利用FactSage反应热力... 为研究Al_(2)O_(3)-MgAl_(2)O_(4)复相骨料对刚玉-尖晶石浇注料抗渣性能的影响,在基质中添加与不添加尖晶石细粉的2种情况下,分别以板状刚玉骨料和Al_(2)O_(3)-MgAl_(2)O_(4)复相骨料制备了刚玉-尖晶石浇注料。先利用FactSage反应热力学软件计算了1600℃时板状刚玉和Al_(2)O_(3)-MgAl_(2)O_(4)复相骨料与熔渣之间的反应热力学,并采用浸泡法研究了2种骨料的抗渣性能,再采用静态坩埚法研究了2种骨料对浇注料抗渣性能的影响。结果表明:与板状刚玉骨料相比,Al_(2)O_(3)-MgAl_(2)O_(4)复相骨料侵蚀层中的裂纹细而少,遭受熔渣侵蚀后不易剥落,其过渡层中既有CA 6相也有尖晶石相,而且尖晶石相中固溶有Fe、Mn元素,该骨料不仅通过形成CA 6层来阻挡熔渣侵蚀,而且通过尖晶石吸收熔渣中FeO、MnO等物质而降低熔渣的黏度,进而起到抵抗熔渣侵蚀的作用。由Al_(2)O_(3)-MgAl_(2)O_(4)复相骨料替代板状刚玉骨料,浇注料试样的侵蚀和渗透面积百分率均有所降低,尤其在基质和骨料中同时引入尖晶石可更加有效地提高刚玉-尖晶石浇注料的抗渣性能。 展开更多
关键词 al_(2)O_(3)-Mgal_(2)O_(4)复相骨料 板状刚玉 刚玉-尖晶石浇注料 抗渣性能
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CuFe_(2)O_(4)/Al_(2)O_(3)非均相活化过一硫酸盐降解盐酸四环素
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作者 张嘉瑶 许家惠 李庆永 《广东石油化工学院学报》 2024年第1期45-49,共5页
基于过一硫酸盐的高级氧化工艺因其在环境修复中的独特优势而引起了广泛的研究兴趣。然而开发低成本、高效的催化剂活化过一硫酸盐仍是降解有机污染物的关键问题。采用柠檬酸溶胶-凝胶法成功合成了一种磁性可回收复合材料(即Cu Fe_(2)O_... 基于过一硫酸盐的高级氧化工艺因其在环境修复中的独特优势而引起了广泛的研究兴趣。然而开发低成本、高效的催化剂活化过一硫酸盐仍是降解有机污染物的关键问题。采用柠檬酸溶胶-凝胶法成功合成了一种磁性可回收复合材料(即Cu Fe_(2)O_(4)/Al_(2)O_(3)),并首次作为一种非均相催化剂用于活化过一硫酸盐(PMS)降解水中盐酸四环素(TC·HCl)。用X射线衍射仪研究了复合材料晶体结构和相形成。系统考察了PMS浓度、催化剂投加量和初始溶液p H对催化活性的影响以及不同水基质下对TC·HCl的降解影响。结果表明,在PMS浓度为0.3 g/L、Cu Fe_(2)O_(4)/Al_(2)O_(3)投加量为0.2 g/L、初始溶液p H为4.7的最佳条件下,反应10 min后Cu Fe_(2)O_(4)/Al_(2)O_(3)/PMS体系可降解约95.1%的TC·HCl。循环实验和磁性测试结果表明,Cu Fe_(2)O_(4)/Al_(2)O_(3)具有良好的稳定性和磁性。因此,Cu Fe_(2)O_(4)/Al_(2)O_(3)可作为一种高效催化剂非均相活化PMS处理含TC·HCl废水。 展开更多
关键词 al_(2)O_(3) CuFe_(2)O_(4) 非均相活化 过一硫酸盐 盐酸四环素
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Amplified internal electric field of Cs_(2)CuBr_(4)@WO_(3-x)S-scheme heterojunction for efficient CO_(2)photoreduction
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作者 Zhijie Zhang Xuesheng Wang +1 位作者 Junyi Qian Jiayue Xu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第5期521-533,共13页
Heterojunction construction,especially S-scheme heterojunction,represents an efficient universal strategy to achieve high-performance photocatalytic materials.For further performance stimulation of these well-designed... Heterojunction construction,especially S-scheme heterojunction,represents an efficient universal strategy to achieve high-performance photocatalytic materials.For further performance stimulation of these well-designed heterojunctions,modulating the interfacial internal electric field(IEF)to steer dynamic charge transfer represents a promising approach.Herein,we realized the precise regulation of Fermi level(E_(F))of the oxidation semiconductor(mesoporous WO_(3-x))by tailoring the concentration of oxygen vacancies(V_(O)),maximizing the IEF intensity in Cs_(2)CuBr_(4)@WO_(3-x)(CCB@WO_(3-x))S-scheme heterojunction.The augmented IEF affords a robust driving force for directional electron delivery,leading to boosted charge separation.Hence,the developed CCB@WO_(3-x)S-scheme heterojunction demonstrated outstanding photocatalytic CO_(2)reduction performance,with the electron consumption rate(Relectron)up to 390.34μmol g^(-1)h^(-1),which is 3.28 folds higher than that of pure CCB.An in-depth analysis of the S-scheme electron transfer mode was presented via theoretical investigations,electron spin resonance(ESR),photo-irradiated Kelvin probe force microscopy(KPFM),and in-situ X-ray photoelectron spectroscopy(XPS).Finally,the CO_(2)photoconversion route was explored in detail using in-situ diffuse reflectance infrared Fourier transform spectroscopy(DRIFTS)and DFT theoretical calculations. 展开更多
关键词 Cs_(2)CuBr_(4) WO_(3-x) Oxygen vacancy S-scheme heterojunction Internal electricfield
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Self-assembled S-scheme In_(2.77)S_(4)/K^(+)-doped g-C_(3)N_(4)photocatalyst with selective O_(2) reduction pathway for efficient H_(2)O_(2) production using water and air
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作者 Qiqi Zhang Hui Miao +2 位作者 Jun Wang Tao Sun Enzhou Liu 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第8期176-189,共14页
The development of an efficient artificial H_(2)O_(2) photosynthesis system is a challenging work using H_(2)O and O_(2) as starting materials.Herein,3D In_(2.77)S_(4) nanoflower precursor was in-situ deposited on K^(... The development of an efficient artificial H_(2)O_(2) photosynthesis system is a challenging work using H_(2)O and O_(2) as starting materials.Herein,3D In_(2.77)S_(4) nanoflower precursor was in-situ deposited on K^(+)-doped g-C_(3)N_(4)(KCN)nanosheets using a solvothermal method,then In_(2.77)S_(4)/KCN(IS/KCN)het-erojunction with an intimate interface was obtained after a calcination process.The investigation shows that the photocatalytic H_(2)O_(2) production rate of 50IS/KCN can reach up to 1.36 mmol g^(-1)h^(-1)without any sacrificial reagents under visible light irradiation,which is 9.2 times and 4.1 times higher than that of KCN and In_(2.77)S_(4)/respectively.The enhanced activity of the above composite can be mainly attributed to the S-scheme charge transfer route between KCN and In_(2.77)S_(4) according to density functional theory calculations,electron paramagnetic resonance and free radical capture tests,leading to an expanded light response range and rapid charge separation at their interface,as well as preserving the active electrons and holes for H_(2)O_(2) production.Besides,the unique 3D nanostructure and surface hydrophobicity of IS/KCN facilitate the diffusion and transportation of O_(2) around the active centers,the energy barriers of O_(2) protonation and H_(2)O_(2) desorption steps are ef-fectively reduced over the composite.In addition,this system also exhibits excellent light harvesting ability and stability.This work provides a potential strategy to explore a sustainable H_(2)O_(2) photo-synthesis pathway through the design of heterojunctions with intimate interfaces and desired reac-tion thermodynamics and kinetics. 展开更多
关键词 Photocatalysis H_(2)O_(2) production K^(+)-doped g-C_(3)N_(4) In_(2.77)S_(4) S-scheme heterojunction
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Layer-controlled 2D Sn_(4)P_(3) via space-confined topochemical transformation for enhanced lithium cycling performance
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作者 Jianan Gu Yongzheng Zhang +4 位作者 Bingbing Fan Yanlong Lv Yanhong Wang Ruohan Yu Meicheng Li 《Nano Research》 SCIE EI CSCD 2024年第11期9697-9703,共7页
Topochemical transformation has emerged as a promising method for fabricating two-dimensional (2D) materials with precise control over their composition and morphology. However, the large-scale synthesis of ultrathin ... Topochemical transformation has emerged as a promising method for fabricating two-dimensional (2D) materials with precise control over their composition and morphology. However, the large-scale synthesis of ultrathin 2D materials with controllable thickness remains a tremendous challenge. Herein, we adopt an efficient topochemical synthesis strategy, employing a confined reaction space to fabricate ultrathin 2D Sn_(4)P_(3) nanosheets in large-scale. By carefully adjusting the rolling number during the processing of Sn/Al foils, we have successfully fabricated Sn_(4)P_(3) nanosheets with varied layer thicknesses, achieving a remarkable minimum thickness of two layers (~ 2.2 nm). Remarkably, the bilayer Sn_(4)P_(3) nanosheets display an exceptional initial capacity of 1088 mAh·g^(−1), nearing the theoretical value of 1230 mAh·g^(−1). Furthermore, we reveal their high-rate property as well as outstanding cyclic stability, maintaining capacity without fading more than 3000 cycles. By precisely controlling the layer thickness and ensuring nanoscale uniformity, we enhance the lithium cycling performance of Sn_(4)P_(3), marking a significant advancement in developing high-performance energy storage systems. 展开更多
关键词 topochemical transformation 2D materials confined reaction layer-controlled Sn_(4)P_(3)nanosheets lithium storage
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Photocatalytic seawater splitting by 2D heterostructure of ZnIn_(2)S_(4)/WO_(3) decorated with plasmonic Au for hydrogen evolution under visible light
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作者 Huiqin An Yanjun Wang +9 位作者 Xing Xiao Jiaxin Liu Zhiyao Ma Tianxin Gao Wanyu Hong Lizhi Zhao Hong Wang Qingjun Zhu Shanshan Chen Zhen Yin 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期55-63,I0003,共10页
Photocatalytic H_(2) evolution from seawater splitting presents a promising approach to tackle the fossil energy crisis and mitigate carbon emission due to the abundant source of seawater and sunlight on the earth.How... Photocatalytic H_(2) evolution from seawater splitting presents a promising approach to tackle the fossil energy crisis and mitigate carbon emission due to the abundant source of seawater and sunlight on the earth.However,the development of efficient photocatalysts for seawater splitting remains a formidable challenge.Herein,a 2D/2D ZnIn_(2)S_(4)/WO_(3)(ZIS/WO_(3))heterojunction nanostructure is fabricated to efficiently separate the photoinduced carriers by steering electron transfer from the conduction band minimum of WO_(3) to the valence band maximum of ZIS via constructing internal electric field.Subsequently,plasmonic Au nanoparticles(NPs)as a novel photosensitizer and a reduction cocatalyst are anchored on ZIS/WO_(3) surface to further enhance the optical absorption of ZIS/WO_(3) heterojunction and accelerate the catalytic conversion.The obtained Au/ZIS/WO_(3) photocatalyst exhibits an outstanding H_(2) evolution rate of 2610.6 or 3566.3μmol g^(-1)h~(-1)from seawater splitting under visible or full-spectrum light irradiation,respectively.These rates represent an impressive increase of approximately 7.3-and 6,6-fold compared to those of ZIS under the illumination of the same light source.The unique 2D/2D structure,internal electric field,and plasmonic metal modification together boost the photocatalytic H_(2) evolution rate of Au/ZIS/WO_(3),making it even comparable to H_(2) evolution from pure water splitting.The present work sheds light on the development of efficient photocatalysts for seawater splitting. 展开更多
关键词 Photocatalytic seawater splitting 2D/2D ZnIn_(2)S_(4)/WO_(3) Surface plasmon resonance effect Interfacial electric field
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Solid-state NMR study on sodium intercalation at low voltage window for Na_(3)V_(2)(PO_(4))_(3) as an anode
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作者 Yuxin Liao Fushan Geng +1 位作者 Ming Shen Bingwen Hu 《Magnetic Resonance Letters》 2024年第2期40-45,共6页
In-situ XRD,^(31)P NMR and ^(23)Na NMR were used to analyze the interaction behavior of Na_(3)V_(2)(PO_(4))_(3) at low voltage,and then a new intercalation model was proposed.During the transition from Na_(3)V_(2)(PO_... In-situ XRD,^(31)P NMR and ^(23)Na NMR were used to analyze the interaction behavior of Na_(3)V_(2)(PO_(4))_(3) at low voltage,and then a new intercalation model was proposed.During the transition from Na_(3)V_(2)(PO_(4))_(3) to Na_(4)V_(2)(PO_(4))_(3),Na ions insert into M1,M2 and M3 sites simultaneously.Afterwards,during the transition of Na_(4)V_(2)(PO_(4))_(3)to Na_(5)V_(2)(PO_(4))_(3),Na ions mainly insert into M3 site. 展开更多
关键词 Na_(3)V_(2)(PO_(4))_(3) ANODE Low voltage NMR Sodium ion battery
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