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Appreciable Enhancement of Photocatalytic Performance for N-doped SrMoO_(4) via the Vapor-thermal Method
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作者 恽志强 戴振翔 +1 位作者 ZHU Liwei ZHENG Ganhong 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第1期24-31,共8页
A series of nitrogen-doped SrMoO_(4) with different Sr/N mole ratio (R=0,0.05,0.10,0.15,0.20,0.40,and 0.60) were synthesized using urea as the N source via the vapor-thermal method.The photocatalytic degradation abili... A series of nitrogen-doped SrMoO_(4) with different Sr/N mole ratio (R=0,0.05,0.10,0.15,0.20,0.40,and 0.60) were synthesized using urea as the N source via the vapor-thermal method.The photocatalytic degradation ability of all samples was evaluated using methylene blue (MB) as a target contaminant.The band gaps of N-doped samples are all higher than that of pristine ones,which is only 3.12 eV.BET specific surface area S_(BET) and pore volume are increased due to the N doping.And the greater increase of S_(BET),the faster the photodegradation speed of methylene blue on SrMoO_(4).More specifically,the degradation efficiency of MB is improved up to 87%in 100 min. 展开更多
关键词 SrMoO_(4) photocatalytic property nitrogen element doping
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Thermodynamic equilibrium theory-guided design and synthesis of Mg-doped LiFe_(0.4)Mn_(0.6)PO_(4)/C cathode for lithium-ion batteries
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作者 Wei Lyu Wenlong Cai +5 位作者 Tuan Wang Xiaobo Sun Enhao Xu Jinxuan Chen Kaipeng Wu Yun Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第4期619-627,共9页
Mn-rich LiFe_(1-x)Mn_(x)PO_(4)(x>0.5),which combines the high operation voltage of LiMnPO_(4)with excellent rate performa nce of LiFePO4,is hindered by its sluggish kinetic properties.Herein,thermodynamic equilibri... Mn-rich LiFe_(1-x)Mn_(x)PO_(4)(x>0.5),which combines the high operation voltage of LiMnPO_(4)with excellent rate performa nce of LiFePO4,is hindered by its sluggish kinetic properties.Herein,thermodynamic equilibrium analysis of Mn^(2+)-Fe^(2+)-Mg^(2+)-C_(2)O_(4)^(2-)-H_(2)O system is used to guide the design and preparation of insitu Mg-doped(Fe_(0.4)Mn_(0.6))_(1-x)Mg_(x)C_(2)O_(4)intermediate,which is then employed as an innovative precursor to synthesize high-performance Mg-doped LiFe_(0.4)Mn_(0.6)PO_(4).It indicates that the metal ions with a high precipitation efficiency and the stoichiometric precursors with uniform element distribution can be achieved under the optimized thermodynamic conditions.Meanwhile,accelerated Li+diffusivity and reduced charge transfer resistance originating from Mg doping are verified by various kinetic characterizations.Benefiting from the contributions of inherited homogeneous element distribution,small particle size,uniform carbon layer coating,enhanced Li+migration ability and structural stability induced by Mg doping,the Li(Fe_(0.4)Mn_(0.6))_(0.97)Mg_(0.03)PO_(4)/C exhibits splendid electrochemical performance. 展开更多
关键词 (Fe_(0.4)Mn_(0.6))_(1-x)MgxC_(2)0_(4) precursors Thermodynami cequilibrium CO-PRECIPITATION Mg doping Lithium-ion batteries
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Os_(1-x)Re_(x)B_(4)固溶体系的结构、力学和电子性质的第一性原理研究
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作者 李慧敏 黄毅 +1 位作者 苗峰 徐敏 《原子与分子物理学报》 北大核心 2024年第5期169-177,共9页
利用第一性原理的计算方法,在维也纳从头计算模拟包(VASP)中计算了三种比例Re原子掺杂OsB_(4)的结构特征及稳定性、电子性质及力学性能.将P42/nmc相OsB_(4)中的Os元素进行Re元素的替代掺杂,并构建出Os_(1-x)Re_(x)B_(4)(x=0,0.0625,0.12... 利用第一性原理的计算方法,在维也纳从头计算模拟包(VASP)中计算了三种比例Re原子掺杂OsB_(4)的结构特征及稳定性、电子性质及力学性能.将P42/nmc相OsB_(4)中的Os元素进行Re元素的替代掺杂,并构建出Os_(1-x)Re_(x)B_(4)(x=0,0.0625,0.125,0.25)固溶体系的结构模型.结果表明:随Re含量的增高Os_(1-x)Re_(x)B_(4)的晶格常数和体积会略微增大,在x高于0.25后发生结构畸变;且P42/nmc-Os_(1-x)Re_(x)B_(4)(x=0,0.0625,0.125)的结构和热力学稳定;态密度主要来源于Os的5d电子和B的2s和2p电子,而Re原子的5d轨道电子对价带和导带态密度也均有贡献,并且随其含量的增高态密度峰值也增大;B-B键和B-Os键具有强共价相互作用是其具有较高的体积和剪切模量的主要原因.随着Re元素的浓度增加,结构的导电性和延展性有一定程度的增大. 展开更多
关键词 OsB_(4) 第一性原理 掺杂 弹性常数 电子特性
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Mn掺杂CoB催化剂在NaBH_(4)液相释氢中的应用研究
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作者 田亚萍 陈一莹 +4 位作者 刘青翠 李云青 庞睿琪 李芳 李其明 《化学研究与应用》 CAS 北大核心 2024年第4期738-744,共7页
CoB非晶催化剂制作成本低,性能良好被广泛应用于NaBH4水解制氢反应中。本文通过液相共还原法制备了一种Co-Mn-B多元非晶合金催化剂,系统研究了过渡金属Mn掺杂对CoB非晶催化剂的影响,采用XRD、SEM、EDS和XPS等手段对Mn掺杂催化剂的晶相... CoB非晶催化剂制作成本低,性能良好被广泛应用于NaBH4水解制氢反应中。本文通过液相共还原法制备了一种Co-Mn-B多元非晶合金催化剂,系统研究了过渡金属Mn掺杂对CoB非晶催化剂的影响,采用XRD、SEM、EDS和XPS等手段对Mn掺杂催化剂的晶相结构、微观形貌和元素价态进行了系统分析,同时对催化剂进行了产氢性能测试,探究了Co-Mn-B催化剂催化NaBH4水解的催化活性和动力学参数。研究结果表明:大范围掺杂Mn得到的三元非晶催化剂依然保持了材料的非晶态结构,Mn掺杂能够明显降低催化剂非晶粒子的团聚现象;当掺杂摩尔比为5%时,Co-Mn-B三元非晶催化剂表现出了最佳的催化性能,在30℃条件下,其水解产氢速率可达1300 mL·min^(-1)·g^(-1);通过阿伦尼乌斯曲线可知,基于该催化剂硼氢化钠水解反应活化能为34.1 kJ·mol^(-1)。 展开更多
关键词 催化剂 NaBH_(4) 制氢 硼化钴 掺杂
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Regulated electronic structure and improved electrocatalytic performances of S-doped FeWO4 for rechargeable zinc-air batteries
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作者 Huan Wang Li Xu +3 位作者 Daijie Deng Xiaozhi Liu Henan Li Dong Su 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第1期359-367,I0009,共10页
The exploration of active and long-lived oxygen reduction reaction(ORR)catalysts for the commercialization of zinc-air batteries are of immense significance but challenging.Herein,the sulfur doped FeWO_(4)embedded in ... The exploration of active and long-lived oxygen reduction reaction(ORR)catalysts for the commercialization of zinc-air batteries are of immense significance but challenging.Herein,the sulfur doped FeWO_(4)embedded in the multi-dimensional nitrogen-doped carbon structure(S-FeWO_(4)/NC)was successfully synthesized.The doped S atoms optimized the charge distribution in FeWO_(4)and enhanced the intrinsic activity.At the same time,S doping accelerated the formation of reaction intermediates during the adsorption reduction of O_(2)on the surface of S-FeWO_(4)/NC.Accordingly,the S-FeWO_(4)/NC catalyst showed more positive half-wave potential(0.85 V)and better stability than that of the FeWO_(4)/NC catalyst.Furthermore,the S-FeWO_(4)/NC-based zinc-air battery exhibited considerable power density of 150.3m W cm^(-2),high specific capacity of 912.7 m A h g^(-1),and prominent cycle stability up to 220 h.This work provides an assistance to the development of cheap and efficient tungsten-based oxygen reduction catalysts and the promotion of its application in the zinc-air battery. 展开更多
关键词 S doping FeWO4 Oxygen reduction reaction Zinc-air batteries
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过渡金属W、Mn、V、Ti掺杂二维材料MoSi_(2)N_(4)的第一性原理计算
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作者 姚登浪 黄泽琛 +2 位作者 郭祥 丁召 王一 《原子与分子物理学报》 北大核心 2024年第6期147-154,共8页
本文基于密度泛函理论(DFT)的第一性原理计算了W、Mn、V、Ti替位掺杂二维MoSi_(2)N_(4)后的几何结构、电子结构以及光学性质的变化.电子结构分析表明W、Mn、W、Ti替位掺杂二维MoSi_(2)N_(4)后的禁带宽度分别为1.806 e V、1.003 e V、1.2... 本文基于密度泛函理论(DFT)的第一性原理计算了W、Mn、V、Ti替位掺杂二维MoSi_(2)N_(4)后的几何结构、电子结构以及光学性质的变化.电子结构分析表明W、Mn、W、Ti替位掺杂二维MoSi_(2)N_(4)后的禁带宽度分别为1.806 e V、1.003 e V、1.218 e V和1.373 e V;四种过渡金属掺杂后MoSi_(2)N_(4)的带隙类型没有发生改变,均为间接带隙半导体;W掺杂后的杂质能级靠近价带顶,费米能级靠近价带顶,为p型半导体,杂质能级为受主能级;Mn掺杂后的杂质能级靠近导带底,费米能级靠近导带底,为n型半导体;V和Ti掺杂后杂质能级位于费米能级附近,为复合中心;光学性质分析表明,在2 e V~4 e V的能量区间内,W掺杂结构的吸收波长为336 nm,体系发生红移;Mn、V和Ti替位掺杂后的吸收波长分别为320 nm、358 nm和338 nm,且掺杂体系均发生蓝移. 展开更多
关键词 二维MoSi_(2)N_(4) 第一性原理计算 掺杂 电子结构 光学性质
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Influence of Ti^(4+) doping on electrochemical properties of LiFePO_4/C cathode material for lithium-ion batteries 被引量:12
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作者 胡国荣 高旭光 +3 位作者 彭忠东 杜柯 谭显艳 刘艳君 《中国有色金属学会会刊:英文版》 EI CSCD 2007年第2期296-300,共5页
To improve the performance of LiFePO4, single phase Li1-4xTixFePO4/C (x=0, 0.005, 0.010, 0.015) cathodes were synthesized by solid-state method. A certain content of glucose was used as carbon precursor and content of... To improve the performance of LiFePO4, single phase Li1-4xTixFePO4/C (x=0, 0.005, 0.010, 0.015) cathodes were synthesized by solid-state method. A certain content of glucose was used as carbon precursor and content of carbon in every final product was about 3.5%. The samples were characterized by X-ray diffraction(XRD), scanning electron microscopy observations(SEM), charge/discharge test, carbon analysis and electrochemical impedance spectroscopy(EIS). The results indicate that the prepared samples have ordered olivine structure and doping of the low concentration Ti^(4+) does not affect the structure of the samples. The electrochemical capabilities evaluated by charge-discharge test show that the sample with 1% Ti^(4+) (molar fraction) has good electrochemical performance delivering about an initial specific capacity of 146.7 mA·h/g at 0.3C rate. Electrochemical impedance spectroscopy measurement results show that the charge transfer resistance of the sample could be decreased greatly by doping an appropriate amount Ti^(4+). 展开更多
关键词 层状阴极材料 LIFEPO4/C 锂离子电池 钛离子掺杂 电化学性质
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Concise Strategies to Enhance the High-Rate Performance of Li_(3)VO_(4) Anodes:Cl Doping,Carbon Coating,and Spherical Architecture Design
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作者 Zongping Zhang Jie Xu +5 位作者 Dongmei Zhang Huijuan Ma Tao Li Ting Xiao Cunyuan Pei Shibing Ni 《Transactions of Tianjin University》 EI CAS 2023年第2期110-119,共10页
The safe operating voltage and low volume variation of Li_(3)VO_(4)(LVO)make it an ideal anode material for lithium(Li)-ion batteries.However,the insufficient understanding of the inner storage mechanism hinders the d... The safe operating voltage and low volume variation of Li_(3)VO_(4)(LVO)make it an ideal anode material for lithium(Li)-ion batteries.However,the insufficient understanding of the inner storage mechanism hinders the design of LVO-based electrodes.Herein,we investigate,for the first time,the Li-ion storage activity in LVO via Cl doping.Moreover,N-doped C coating was simultaneously achieved in the Cl doping process,resulting in synergistically improved reaction kinetics.As a result,the as-prepared Cl-doped Li_(3)VO_(4) coated with N-doped C(Cl-LVO@NC)electrodes deliver a discharge capacity of 884.1 mAh/g after 200 cycles at 0.2 A/g,which is the highest among all of the LVO-based electrodes.The Cl-LVO@NC electrodes also exhibit high-capacity retention of 331.1 mAh/g at 8.0 A/g and full capacity recovery after 5 periods of rate testing over 400 cycles.After 5000 cycles at 4.0 A/g,the discharge capacity can be maintained at 423.2 mAh/g,which is superior to most LVO-based electrodes.The Li-ion storage activity in LVO via Cl doping and significant improvement in the high-rate Li-ion storage reported in this work can be used as references for the design of advanced LVO-based electrodes for high-power applications. 展开更多
关键词 Li_(3)VO_(4) Cl doping New mechanisms High-rate Li-ion storage
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非贵金属掺杂改性g-C_(3)N_(4)光催化分解水制氢的研究进展
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作者 李苗 李欣儒 +1 位作者 武威 周远 《中国陶瓷》 CAS CSCD 北大核心 2024年第1期1-8,34,共9页
光催化裂解水产氢是缓解能源危机和环境污染两大难题最有前景的技术之一。石墨相氮化碳(g-C_(3)N_(4))以其合适的带隙宽度、丰富的活性位点和成本低廉等优点,近年已成为极具有应用前景的光催化材料。然而,单一g-C_(3)N_(4)的可见光响应... 光催化裂解水产氢是缓解能源危机和环境污染两大难题最有前景的技术之一。石墨相氮化碳(g-C_(3)N_(4))以其合适的带隙宽度、丰富的活性位点和成本低廉等优点,近年已成为极具有应用前景的光催化材料。然而,单一g-C_(3)N_(4)的可见光响应范围窄、电子-空穴复合严重、光催化产氢效率低等问题制约了其在光催化领域的应用。对g-C_(3)N_(4)进行形貌调控、表面改性、元素掺杂、构建异质结是改善其光催化性能的有效策略。介绍了目前金属掺杂改性g-C_(3)N_(4)复合材料常见的制备方法,归纳了碱金属、过渡金属及稀土金属等非贵金属掺杂改性g-C_(3)N_(4)基复合材料的光催化水解制氢相关研究进展,旨在为光催化分解水制氢方面提供参考。 展开更多
关键词 石墨相碳化氮 金属掺杂 光催化产氢
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Oxygen vacancy defects engineering on Cu-doped Co_(3)O_(4) for promoting effective COS hydrolysis
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作者 Guanyu Mu Yan Zeng +5 位作者 Yong Zheng Yanning Cao Fujian Liu Shijing Liang Yingying Zhan Lilong Jiang 《Green Energy & Environment》 SCIE EI CAS CSCD 2023年第3期831-841,共11页
The activation of H_(2)O is a key step of the COS hydrolysis,which may be tuned by oxygen vacancy defects in the catalysts.Herein,we have introduced Cu into Co_(3)O_(4) to regulate the oxygen vacancy defect content of... The activation of H_(2)O is a key step of the COS hydrolysis,which may be tuned by oxygen vacancy defects in the catalysts.Herein,we have introduced Cu into Co_(3)O_(4) to regulate the oxygen vacancy defect content of the catalysts.In situ DRIFTS and XPS spectra reveal that COS and H_(2)O are adsorbed and activated by oxygen vacancy.The 10 at%Cu doped Co_(3)O_(4) sample(10Cu-Co_(3)O_(4))exhibits the optimal activity,100%of COS conversion at 70℃.The improved oxygen vacancies of CueCo_(3)O_(4) accelerate the activation of H_(2)O to form active -OH.COS binds with hydroxyl to form the intermediate HSCO^(-)_(2),and then the activated-OH on the oxygen vacancy reacts with HSCO^(-)_(2) to form HCO^(-)_(3).Meanwhile,the catalyst exhibits high catalytic stability because copper species(Cu+/Cu^(2+))redox cycle mitigate the sulfation of Co_(3)O_(4)(Co^(2+)/Co^(3+)).Our work offers a promising approach for the rational design of cobalt-related catalysts in the highly efficient hydrolysis COS process. 展开更多
关键词 Oxygen vacancy COS hydrolysis In situ spectra Cu doped Co_(3)O_(4)
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Cs_(4)EuI_(6)∶Sm近红外闪烁晶体的生长及发光性能研究
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作者 杨江浩 黄欣帅 +2 位作者 蓝陈慧 魏钦华 秦来顺 《人工晶体学报》 CAS 北大核心 2024年第4期627-633,共7页
随着长波敏感硅基光电探测器的发展,近红外闪烁晶体逐渐成为研究热点,其中Sm^(2+)掺杂的Eu^(2+)基卤化物晶体表现出优异的近红外发光性能。本文利用布里奇曼法成功制备了尺寸达到厘米级别的Cs_(4)EuI_(6)∶Sm近红外闪烁晶体,通过XRD、XP... 随着长波敏感硅基光电探测器的发展,近红外闪烁晶体逐渐成为研究热点,其中Sm^(2+)掺杂的Eu^(2+)基卤化物晶体表现出优异的近红外发光性能。本文利用布里奇曼法成功制备了尺寸达到厘米级别的Cs_(4)EuI_(6)∶Sm近红外闪烁晶体,通过XRD、XPS和ICP-OES等手段研究了晶体的组分和结构。结果表明,Sm^(2+)成功掺入Cs_(4)EuI_(6)基质,且对基质的晶体结构无明显影响。在紫外和X射线的激发下,晶体主要呈现两个发光中心(Eu^(2+)和Sm^(2+)),发光峰位于450和840 nm左右,分别对应于Eu^(2+)和Sm^(2+)的5d→4f的跃迁发光,紫外激发下的Eu^(2+)和Sm^(2+)的荧光衰减寿命均处于微秒级别。结果表明,随着Sm^(2+)掺杂浓度的增加,发光波长由蓝光逐渐变为近红外光。同时系统研究了不同Sm^(2+)浓度掺杂对晶体发光性能、Eu^(2+)-Sm^(2+)能量传递及荧光寿命的影响,实验结果表明,改变Sm^(2+)掺杂浓度可以调控晶体的发光性能。 展开更多
关键词 Cs_(4)EuI_(6) Sm^(2+)掺杂 闪烁晶体 近红外发光 布里奇曼法 能量传递
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Tuning the electrochemical behaviors of N-doped LiMn_(x)Fe_(1–x)PO_(4)/C via cation engineering with metal-organic framework-templated strategy
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作者 Yilin Li Zhaohui Xu +4 位作者 Xinyu Zhang Zhenyu Wu Jian-En Zhou Jinjiang Zhang Xiaoming Lin 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第10期239-253,I0008,共16页
LiFePO_(4),as a prevailing cathode material for lithium-ion batteries(LIBs),still encounters issues such as intrinsic poor electronic conductivity,inferior Li-ion diffusion kinetic,and two-phase transformation mechani... LiFePO_(4),as a prevailing cathode material for lithium-ion batteries(LIBs),still encounters issues such as intrinsic poor electronic conductivity,inferior Li-ion diffusion kinetic,and two-phase transformation mechanism involving substantial structural rearrangements,resulting in unsatisfactory rate performance.Carbon coating,cation doping,and morphological control have been widely employed to reconcile these issues.Inspired by these,we propose a synthetic route with metal–organic frameworks(MOFs)as self-sacrificial templates to simultaneously realize shape modulation,Mn doping,and N-doped carbon coating for enhanced electrochemical performances.The as-synthesized Li MnxFe1–xPO4/C(x=0,0.25,and0.5)deliver tunable electrochemical behaviors induced by the MOF templates,among which LiMn_(0.25)Fe_(0.75)PO_(4)/C outperforms its counterparts in cyclability(164.7 mA h g^(-1)after 200 cycles at 0.5 C)and rate capability(116.3 mA h g^(-1)at 10 C).Meanwhile,the ex-situ XRD reveals a dominant single-phase solid solution mechanism of LiMn_(0.25)Fe_(0.75)PO_(4)/C during delithiation,contrary to the pristine LiFePO_(4),without major structural reconstruction,which helps to explain the superior rate performance.Furthermore,the density functional theory(DFT)calculations verify the effects of Mn doping and embody the superiority of LiMn_(0.25)Fe_(0.75)PO_(4)/C as a LIB cathode,which well supports the experimental observations.This work provides insightful guidance for the design of tunable MOF-derived mixed transitionmetal systems for advanced LIBs. 展开更多
关键词 LiMn_(x)Fe_(1–x)PO_(4)/C Mn doping Metal-organic framework Cathode
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多酸修饰的CuBi_(2)O_(4)/Mg-CuBi_(2)O_(4)同质结光阴极用于高效光电化学转化
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作者 方文诚 刘东 +2 位作者 张莹 冯浩 李强 《物理化学学报》 SCIE CAS CSCD 北大核心 2024年第2期96-97,共2页
CuBi_(2)O_(4)作为最有前景的光阴极材料之一,其理论光电流密度可达20 mA·cm^(-2)。然而,在实际光电化学反应中,由于光生载流子复合严重,实际的光电流密度相较于理论值仍然存在显著差异。一般而言,光电化学性能在很大程度上依赖于... CuBi_(2)O_(4)作为最有前景的光阴极材料之一,其理论光电流密度可达20 mA·cm^(-2)。然而,在实际光电化学反应中,由于光生载流子复合严重,实际的光电流密度相较于理论值仍然存在显著差异。一般而言,光电化学性能在很大程度上依赖于光生载流子的高效分离和传输,以及快速的反应动力学。本文中,我们提出了一种多金属氧酸盐(多酸)修饰的CuBi_(2)O_(4)/MgCuBi_(2)O_(4)同质结光阴极。系统考虑了光阴极体相和界面的载流子传输:首先,通过CuBi_(2)O_(4)/Mg-CuBi_(2)O_(4)同质结中所构造的内建电场实现光生电子和空穴的定向转移;另外,多酸助催化剂Ag6[P_(2)W_(18)O_(62)](AgP_(2)W_(18))在反应过程中可被还原,进而可被用作质子存储载体,可在抑制载流子复合的同时促进界面光电化学反应。这种协同作用可在促进体相-界面载流子传输的同时解决界面缓慢反应动力学这一瓶颈。结果表明,本文所提出的光阴极实现了出色的光电化学性能,在0.3 V vs.RHE时,光电流密度达-0.64 mA·cm^(-2);而在使用H2O2电子牺牲剂后,相同电位下的光电流密度进一步提升到-3 mA·cm^(-2)。本文所提出的光阴极与已有研究工作中报道的最佳结果相比,具有相当的光电化学活性,证明了其在实际应用中的巨大潜力。 展开更多
关键词 铋酸铜 镁掺杂 光阴极 多酸助催化剂 光电化学
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氮掺杂碳纳米管负载Co_(3)O_(4)氧还原电催化剂的制备与性能
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作者 贾海浪 李红城 +2 位作者 吉鹏程 滕洋 关明云 《无机化学学报》 SCIE CAS CSCD 北大核心 2024年第4期693-700,共8页
以碳纳米管(CNT)为原料,通过负载维生素B12,简单热解得到了一种氮掺杂碳纳米管(N/CNT)负载低含量Co_(3)O_(4)纳米颗粒的氧还原电催化剂(Co_(3)O_(4)@N/CNT)。得益于均匀分散的Co_(3)O_(4)纳米颗粒以及氮掺杂,Co_(3)O_(4)@N/CNT表现出了... 以碳纳米管(CNT)为原料,通过负载维生素B12,简单热解得到了一种氮掺杂碳纳米管(N/CNT)负载低含量Co_(3)O_(4)纳米颗粒的氧还原电催化剂(Co_(3)O_(4)@N/CNT)。得益于均匀分散的Co_(3)O_(4)纳米颗粒以及氮掺杂,Co_(3)O_(4)@N/CNT表现出了优异的氧还原催化性能,其半波电位达到了0.844 V(vs RHE),超越了商业Pt/C(0.820 V(vs RHE))。与Pt/C相比,基于Co_(3)O_(4)@N/CNT组装的锌-空气电池表现出了更优的放电性能和循环稳定性。 展开更多
关键词 氧还原反应 碳纳米管 氮掺杂 Co_(3)O_(4)
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Mn^(4+)掺杂氟化物红色发光粒子的表面钝化和白色发光二极管应用
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作者 杨晨 叶梦琳 周文理 《发光学报》 EI CAS CSCD 北大核心 2024年第2期299-307,共9页
Mn^(4+)掺杂的氟化物红色荧光粉的耐湿性差,严重影响了白色发光二极管(WLEDs)的光色稳定性。本工作基于绿矾溶液的还原性,将K_(2)SiF_(6)∶Mn^(4+)颗粒表面的Mn^(4+)还原成可溶的低价态Mn^(2+),实现了氟化物粒子的表面钝化及高耐湿性。... Mn^(4+)掺杂的氟化物红色荧光粉的耐湿性差,严重影响了白色发光二极管(WLEDs)的光色稳定性。本工作基于绿矾溶液的还原性,将K_(2)SiF_(6)∶Mn^(4+)颗粒表面的Mn^(4+)还原成可溶的低价态Mn^(2+),实现了氟化物粒子的表面钝化及高耐湿性。在水浸360 h后,表面钝化的K_(2)SiF_(6)∶Mn^(4+)粒子的发光强度仍保持初始强度的95%,而未处理的K_(2)SiF_(6):Mn^(4+)颗粒发光强度迅速降为初始值的46%。此外,采用绿矾溶液对表面已水解的氟化物荧光粉进行简单的浸泡,可使其完全恢复原来的发光强度。电感耦合等离子体-原子发射光谱、X射线光电子谱、元素能谱等表征结果显示,经绿矾溶液处理的K_(2)SiF_(6):Mn^(4+)粒子表面的Mn^(4+)浓度显著减小,证实了惰性壳层K_(2)SiF_(6)的形成,揭示了氟化物粒子耐湿性显著提升的原因。此外,经高温(85℃)高湿(85%)的条件老化1 000 h后,WLEDs器件中表面钝化的K_(2)SiF_(6)∶Mn^(4+)粒子仍保持着100%的红色发光强度,明显高于未钝化的氟化物的59%,进一步证实了绿矾溶液钝化的K_(2)SiF_(6)∶Mn^(4+)红色荧光粉具有非常优异的环境稳定性。 展开更多
关键词 Mn^(4+)掺杂 红色荧光粉 耐湿性 绿矾溶液 表面钝化
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红色荧光粉CaWO_(4)∶Eu^(3+),Bi^(3+)的制备和光学性能的研究
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作者 蔡小勇 姜洪喜 《人工晶体学报》 CAS 北大核心 2024年第5期833-840,共8页
本文采用高温固相法合成了一系列红色荧光粉CaWO_(4)∶Eu^(3+),Bi^(3+)。通过X射线衍射仪、扫描电子显微镜和荧光分光光度计等手段,对样品的晶体结构、微观形貌、光学性能、能量传递方式、荧光寿命和热稳定性进行了表征。结果表明,当Eu^... 本文采用高温固相法合成了一系列红色荧光粉CaWO_(4)∶Eu^(3+),Bi^(3+)。通过X射线衍射仪、扫描电子显微镜和荧光分光光度计等手段,对样品的晶体结构、微观形貌、光学性能、能量传递方式、荧光寿命和热稳定性进行了表征。结果表明,当Eu^(3+)和Bi^(3+)的掺杂浓度分别为7%和2%时(摩尔分数),荧光粉红色发光(615 nm)最强,理论计算得到荧光粉的平均颗粒尺寸为50.27 nm,这与电子显微镜观察结果相符合。能量传递方式以电偶极-电四极相互作用为主,对CaWO_(4)∶7%Eu^(3+),yBi^(3+)(y=0~6%)系列荧光粉进行了荧光寿命测量,发现它们荧光寿命基本相同,都在0.56 ms左右。对CaWO_(4)∶7%Eu^(3+),2%Bi^(3+)荧光粉在不同温度下的光谱进行比较,并且计算相应的色度坐标,当温度升高时,色度坐标整体左移,发光强度有所变弱,但整体来说热稳定性较好。较好的热稳定性和明亮红光发射表明该荧光粉可以作为潜在商用红光荧光粉。 展开更多
关键词 CaWO_(4) 掺Eu^(3+) 掺Bi^(3+) 高温固相法 荧光粉 敏化剂 荧光寿命 热稳定性
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Insights into the enhanced structure stability and electrochemical performance of Ti^(4+)/F^(-) co-doped P2-Na_(0.67)Ni_(0.33)Mn_(0.67)O_(2) cathodes for sodium ion batteries at high voltage 被引量:3
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作者 Pengfei Zhou Jing Zhang +6 位作者 Zhennan Che Zuhao Quan Ju Duan Xiaozhong Wu Junying Weng Jinping Zhao Jin Zhou 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第4期655-662,共8页
P2-Na_(0.67)N_(i0.33)Mn_(0.67)O_(2)is considered as a promising cathode material for sodium-ion battery (SIBs)because of its high capacity and discharge potential.However,its practical use is limited by Na^(+)/vacancy... P2-Na_(0.67)N_(i0.33)Mn_(0.67)O_(2)is considered as a promising cathode material for sodium-ion battery (SIBs)because of its high capacity and discharge potential.However,its practical use is limited by Na^(+)/vacancy ordering and P2-O2 phase transition.Herein,a Ti^(4+)/F^(-) co-doping strategy is developed to address these issues.The optimal P2-Na_(0.67)Ni_(0.33)Mn_(0.37)Ti_(0.3)O_(1.9)F_(0.1) exhibits much enhanced sodium storage performance in the high voltage range of 2.0–4.4 V,including a cycling stability of 77.2%over 300cycles at a rate of 2 C and a high-rate capability of 87.7 m Ah g^(-1) at 6 C.Moreover,the P2-Na_(0.67)Ni_(0.33)Mn_(0.37)Ti_(0.3)O_(1.9)F_(0.1) delivers reversible capacities of 82.7 and 128.1 m Ah g^(-1) at-10 and 50℃ at a rate of 2 C,respectively.The capacity retentions over 200 cycles at-10℃ is 94.2%,implying more opportunity for practical application.In-situ X-ray diffraction analysis reveals that both P2-O2 phase transitions and Na^(+)/vacancy ordering is suppressed by Ti^(4+)/F^(-) co-doping,which resulting in fast Na^(+) diffusion and stable phase structure.The hard carbon//P2-Na_(0.67)Ni_(0.33)Mn_(0.37)Ti_(0.3)O_(1.9)F_(0.1) full cell exhibits a high energy density of 310.2 Wh kg^(-1) and remarkable cyclability with 82.1%retention after 300 cycles at 1 C in the voltage range of 1.5–4.2 V.These results demonstrate that the co-doping Ti^(4+)/F^(-) is a promising strategy to improve the electrochemical properties of P2-Na_(0.67)Ni_(0.33)Mn_(0.67)O_(2),providing a facile tactic to develop high performance cathode materials for SIBs. 展开更多
关键词 P2-Na_(0.67)N_(i0.33)Mn_(0.67)O_(2) Ti^(4+)/F^(-)co-doping Phase transition Na^(+)/vacancy ordering Sodium-ion batteries
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V-Vo-Co_(3)O_(4)催化剂的制备及其析氧性能的研究
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作者 郝根彦 田露 +2 位作者 郎学磊 钟达忠 赵强 《煤炭转化》 CAS CSCD 北大核心 2024年第2期98-108,共11页
阳极的析氧反应(OER)是限制电解水制氢的主要因素,传统的OER电催化剂由于活性低、稳定性差等缺点无法实现大规模使用。过渡金属氧化物Co_(3)O_(4)是一种很有前景的OER催化剂,但较弱的导电性仍然制约着其电催化性能。通过对Co_(3)O_(4)... 阳极的析氧反应(OER)是限制电解水制氢的主要因素,传统的OER电催化剂由于活性低、稳定性差等缺点无法实现大规模使用。过渡金属氧化物Co_(3)O_(4)是一种很有前景的OER催化剂,但较弱的导电性仍然制约着其电催化性能。通过对Co_(3)O_(4)进行改性以增强电催化活性及稳定性,分别在NaBH4和VCl_(3)水溶液中两步浸泡法合成了富氧空位、V掺杂的Co_(3)O_(4)催化剂。利用XRD、SEM、EDS、TEM、HRTEM、SAED、拉曼光谱、XPS等手段对催化剂的相纯度、晶体结构、微观形貌、含有的官能团及化学键等性质进行测试和分析,并对催化剂进行电化学性能测试。结果表明:氧空位的引入使晶格间距有所增大,V成功掺杂到了Vo-Co_(3)O_(4)/NF(Vo指氧空位)结构中;氧空位和V掺杂协同提高了Co_(3)O_(4)/NF的OER性能。在1 mol/L KOH中,V-Vo-Co_(3)O_(4)/NF仅需253 mV/270 mV的过电位就能驱动50(mA·cm^(-2))/100(mA·cm^(-2))的电流密度,Tafel斜率为71.5 mV/dec,并具有100 h的稳定性。其性能的提升主要归因于V掺杂及氧空位的引入对Co_(3)O_(4)电子构型的调控,低结晶度的表面暴露了更多活性位点,以及亲水性的增强有利于OER过程中反应中间体的吸附和解吸。 展开更多
关键词 析氧反应(OER) 掺杂 氧空位 Co_(3)O_(4) 电解水
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钠离子电池正极材料Na_(4)Fe_(3-x)Cr_(x)(PO_(4))_(2)P_(2)O_(7)/C@CNT的制备及电化学性能研究
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作者 王贵海 陈彤彤 +4 位作者 陈杰 张梓尧 甄川 韩现英 李建刚 《现代化工》 CAS CSCD 北大核心 2024年第5期149-154,共6页
为改善钠离子电池正极材料Na_(4)Fe_(3)(PO_(4))_(2)P_(2)O_(7)的导电性,提高其充放电性能,采用Cr^(3+)掺杂提高正极材料本征导电性,采用包覆碳和复合碳纳米管(CNT)构筑高效导电网络以加快纳米活性物颗粒间的电子传导,制备并探究了Na_(4... 为改善钠离子电池正极材料Na_(4)Fe_(3)(PO_(4))_(2)P_(2)O_(7)的导电性,提高其充放电性能,采用Cr^(3+)掺杂提高正极材料本征导电性,采用包覆碳和复合碳纳米管(CNT)构筑高效导电网络以加快纳米活性物颗粒间的电子传导,制备并探究了Na_(4)Fe_(3-x)Cr_(x)(PO_(4))_(2)P_(2)O_(7)/C@CNT复合材料的结构与电化学性能。结果表明,当Cr^(3+)掺杂量x为0.075、CNT添加质量分数为3%时,所制备材料表现出较小的电荷传递阻抗和优异的高倍率充放电性能。其0.1 C和20 C倍率下的放电比容量分别达到120.64 mAh/g和87.11 mAh/g,10 C倍率下循环500次后容量保持率高达92.37%。 展开更多
关键词 钠离子电池 正极材料 Na_(4)Fe_(3)(PO_(4))_(2)P_(2)O_(7) Cr^(3+)掺杂 碳纳米管
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氟掺杂改性LiMn_(0.5)Fe_(0.5)PO_(4)正极材料及其电化学性能
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作者 于松民 金洪波 +2 位作者 杨明虎 余海峰 江浩 《化工进展》 EI CAS CSCD 北大核心 2024年第1期302-309,共8页
目前磷酸铁锂材料由于其较低的能量密度难以满足使用需求。磷酸锰铁锂具有比磷酸铁锂更高的能量密度,同时兼顾磷酸铁锂低成本和晶体结构稳定性的特点。然而缓慢的锂离子扩散动力学和Mn^(3+)引起的Jahn-Teller效应导致材料的循环和倍率... 目前磷酸铁锂材料由于其较低的能量密度难以满足使用需求。磷酸锰铁锂具有比磷酸铁锂更高的能量密度,同时兼顾磷酸铁锂低成本和晶体结构稳定性的特点。然而缓慢的锂离子扩散动力学和Mn^(3+)引起的Jahn-Teller效应导致材料的循环和倍率性能差,限制了磷酸锰铁锂实际应用。本工作通过引入F离子掺杂,构筑沿b轴取向生长的110nm纳米颗粒磷酸锰铁锂正极材料,探究了它们的基本物理化学性质与电化学性能,发现沿b轴取向生长并暴露的(010)晶面能够显著提升锂离子扩散动力学。此外,F离子引入显著增强了Li—O键以及PO_(4)^(3−)骨架结构,提高锂离子嵌入和脱出过程中晶体结构稳定性。因此,在0.1C和5C电流下,改性磷酸锰铁理正极材料可逆放电比容量分别为153mA·h/g和106mA·h/g。相比于未改性材料,1C循环750次后比容量保持率从90.6%提升到96.4%。 展开更多
关键词 电化学 磷酸锰铁锂 正极 锂离子电池 氟掺杂
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