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Synthesizing active and durable cubic ceria catalysts(<6 nm)for fast dehydrogenation of bio-polyols to carboxylic acids coproducing green H_(2)
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作者 Mengyuan Liu Puhua Sun +3 位作者 Guangyu Zhang Xin Jin Chaohe Yang Honghong Shan 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第3期529-543,共15页
Dehydrogenation is considered as one of the most important industrial applications for renewable energy.Cubic ceria-based catalysts are known to display promising dehydrogenation performances in this area.Large partic... Dehydrogenation is considered as one of the most important industrial applications for renewable energy.Cubic ceria-based catalysts are known to display promising dehydrogenation performances in this area.Large particle size(>20 nm)and less surface defects,however,hinder further application of ceria materials.Herein,an alternative strategy involving lactic acid(LA)assisted hydrothermal method was developed to synthesize active,selective and durable cubic ceria of<6 nm for dehydrogenation reactions.Detailed studies of growth mechanism revealed that,the carboxyl and hydroxyl groups in LA molecule synergistically manipulate the morphological evolution of ceria precursors.Carboxyl groups determine the cubic shape and particle size,while hydroxyl groups promote compositional transformation of ceria precursors into CeO_(2) phases.Moreover,enhanced oxygen vacancies(Vo)on the surface of CeO_(2) were obtained owing to continuous removal of O species under reductive atmosphere.Cubic CeO_(2) catalysts synthesized by the LA-assisted method,immobilized with bimetallic PtCo clusters,exhibit a record high activity(TOF:29,241 h^(-1))and Vo-dependent synergism for dehydrogenation of bio-derived polyols at 200℃.We also found that quenching Vo defects at air atmosphere causes activity loss of PtCo/CeO_(2) catalysts.To regenerate Vo defects,a simple strategy was developed by irradiating deactivated catalysts using hernia lamp.The outcome of this work will provide new insights into manufacturing durable catalyst materials for aqueous phase dehydrogenation applications. 展开更多
关键词 Cubic ceria Oxygen vacancy DEHYDROGENATION C-H bond activation
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Catalytic properties of Ni/ceria-yttria electrode materials for partial oxidation of methane 被引量:1
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作者 Shaohua Zeng Lei Wang Maochu Gong Yaoqiang Chen 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2010年第5期509-514,共6页
The catalytic properties of electrode materials Ni/Ce1-xYxO2-δ (x = 0.05, 0.10, 0.15 and 0.20) were investigated for partial oxidation of methane (POM). The CeO2-Y2O3 solid solutions were prepared by co-precipita... The catalytic properties of electrode materials Ni/Ce1-xYxO2-δ (x = 0.05, 0.10, 0.15 and 0.20) were investigated for partial oxidation of methane (POM). The CeO2-Y2O3 solid solutions were prepared by co-precipitaion method. The Ni-based catalysts supported on the solid solutions were obtained using the impregnation method. Structural, surface and redox characteristics of the prepared catalysts were system- atically examined by means of X-ray diffraction (XRD), N2 adsorption-desorption (Brunauer-Emmet-Teller BET method), H2 temperature- programmed reduction (H2-TPR) and X-ray photoelectron spectroscopy (XPS) methods. The results indicated that yttria doped in the ceria system, forming a good solid solution, readily induced more defects and oxygen vacancies that favored the improvement of catalytic activity and coking resistance. In the temperature range of 600-850 ℃, Ni/Ce0.90Y0.10O1.950 catalyst exhibited the best catalytic activity among the four tested catalysts, with the CH4 conversion, CO selectivity and H2 selectivity of 78.8%, 90.6% and 89.8%, respectively, at 850 ℃. And the H2/CO molar ratio in products of Ni/Ce0.90Y0.10O1.950 catalyst was closer to the theoretical value of 2.0. The excellent coking resistant behaviors for all catalysts were clearly manifested by thermal analysis. 展开更多
关键词 METHANE partial oxidation yttria-doped ceria solid oxide fuel cells
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Solar chemical looping reforming of methane combined with isothermal H2O/CO2 splitting using ceria oxygen carrier for syngas production 被引量:2
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作者 Srirat Chuayboon Stéphane Abanades Sylvain Rodat 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第2期60-72,共13页
The chemical looping reforming of methane through the nonstoichiometric ceria redox cycle(CeO2/CeO2-δ) has been experimentally investigated in a directly irradiated solar reactor to convert both solar energy and meth... The chemical looping reforming of methane through the nonstoichiometric ceria redox cycle(CeO2/CeO2-δ) has been experimentally investigated in a directly irradiated solar reactor to convert both solar energy and methane to syngas in the temperature range 900–1050 °C. Experiments were carried out with different ceria shapes via two-step redox cycling composed of endothermic partial reduction of ceria with methane and complete exothermic re-oxidation of reduced ceria with H2 O/CO2 at the same operating temperature, thereby demonstrating the capability to operate the cycle isothermally. A parametric study considering different ceria macrostructure variants(ceria packed powder, ceria packed powder mixed with inert Al2 O3 particles, and ceria reticulated porous foam) and operating parameters(methane flow-rate, reduction temperature, or sintering temperature) was conducted in order to unravel their impact on the bed-averaged oxygen non-stoichiometry(δ), syngas yield, methane conversion, and solar reactor performance. The ceria cycling stability was also experimentally investigated to demonstrate repeatable syngas production by alternating the flow between CH4 and H2 O(or CO2). A decrease in sintering temperature of the ceria foam was beneficial for increasing syngas selectivity, methane conversion,and reactor performance. Increasing both CH4 concentration and reduction temperature enhanced δ with the maximum value up to 0.41 but concomitantly favored CH4 cracking reaction. The ceria reticulated porous foam showed better performance in terms of effective heat transfer, due to volumetric absorption of concentrated solar radiation and uniform heating with lower solar power consumption, thereby promoting the solar-to-fuel energy conversion efficiency that reached up to 5.60%. The energy upgrade factor achieved during cycle was up to 1.19. Stable patterns in the δ and syngas yield for consecutive cycles with the ceria foam validated material performance stability. 展开更多
关键词 Chemical LOOPING METHANE REFORMING ceria structure Concentrated SOLAR power Syngas production H2O/CO2 SPLITTING
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Effect of Addition of Base on Ceria and Reactivity of CuO/CeO_2 Catalysts for Low-Temperature CO Oxidation 被引量:1
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作者 Xiucheng Zheng Xiaoli Zhang +2 位作者 Shuping Wang Xiangyu Wang Shihua Wu 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2007年第2期179-185,共7页
In this work, we have reported the influence of the addition of base (KOH) on the physicochemical property of ceria synthesized by alcohothermal process, and the alcohothermal mechanism was also put forward. Further... In this work, we have reported the influence of the addition of base (KOH) on the physicochemical property of ceria synthesized by alcohothermal process, and the alcohothermal mechanism was also put forward. Furthermore, the prepared CeO2 was used as the support to prepare CuO/CeO2 catalysts via the wet impregnation method. The samples were characterized by N2 adsorption-desorption, X-ray powder diffraction (XRD), high resolution transmission electron microscopy (HRTEM), and temperatureprogrammed reduction by H2 (H2-TPR). The catalytic properties of the CuO/CeO2 catalysts for lowtemperature CO oxidation were studied using a microreactor-GC system. The crystal size of CeO2-A was much smaller than that of CeO2-B, and the corresponding copper oxide catalysts exhibited higher catalytic activity than that of the CeO2-B-supported catalysts under the same reaction conditions. The alcohothermal mechanism indicated that KOH plays a key role in determining the physicochemical and catalytic properties of ceria-based materials. 展开更多
关键词 alcohothermal synthesis ceria CuO/CeO2 catalyst CO oxidation alcohothermal mechanism
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Surface defect-rich ceria quantum dots anchored on sulfur-doped carbon nitride nanotubes with enhanced charge separation for solar hydrogen production 被引量:2
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作者 Mengru Li Changfeng Chen +3 位作者 Liping Xu Yushuai Jia Yan Liu Xin Liu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第1期51-59,I0003,共10页
Designing defect-engineered semiconductor heterojunctions can effectively promote the charge carrier separation.Herein,novel ceria(CeO2) quantum dots(QDs) decorated sulfur-doped carbon nitride nanotubes(SCN NTs) were ... Designing defect-engineered semiconductor heterojunctions can effectively promote the charge carrier separation.Herein,novel ceria(CeO2) quantum dots(QDs) decorated sulfur-doped carbon nitride nanotubes(SCN NTs) were synthesized via a thermal polycondensation coupled in situ depositionprecipitation method without use of template or surfactant.The structure and morphology studies indicate that ultrafine CeO2 QDs are well distributed inside and outside of SCN NTs offering highly dispersed active sites and a large contact interface between two components.This leads to the promoted formation of rich Ce^(3+) ion and oxygen vacancies as confirmed by XPS.The photocatalytic performance can be facilely modulated by the content of CeO2 QDs introduced in SCN matrix while bare CeO2 does not show activity of hydrogen production.The optimal catalyst with 10% of CeO2 loading yields a hydrogen evolution rate of 2923.8 μmol h-1 g-1 under visible light,remarkably higher than that of bare SCN and their physical mixtures.Further studies reveal that the abundant surface defects and the created 0 D/1 D junctions play a critical role in improving the separation and transfer of charge carriers,leading to superior solar hydrogen production and good stability. 展开更多
关键词 Photocatalytic hydrogen evolution ceria quantum dots Sulfur-doped carbon nitride nanotubes Surface defects Charge separation
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Catalytic role of assembled Ce Lewis acid sites over ceria for electrocatalytic conversion of dinitrogen to ammonia 被引量:1
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作者 Jiamin Qi Shulan Zhou +1 位作者 Ke Xie Sen Lin 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第9期249-258,共10页
CeO_(2)-based catalysts are emerging as novel candidates for catalyzing nitrogen reduction reaction(NRR).However, despite the increasing amount of experimental and theoretical research, the design of more efficient ce... CeO_(2)-based catalysts are emerging as novel candidates for catalyzing nitrogen reduction reaction(NRR).However, despite the increasing amount of experimental and theoretical research, the design of more efficient ceria catalysts for NRR remains a challenge due to the poor knowledge of the catalytic mechanism, particularly the nature of the active sites and how they catalyze NRR. Here, using first-principle calculations, we investigated the NRR catalysis process involving adjacent Ce Lewis acid clusters formed on(111),(110), and(100) facets of CeO_(2) as active sites. Our results revealed that the assembled structures of the Ce Lewis acid as active centers after the oxygen vacancies(Ovs) were opened. The exposed Ce sites on CeO_(2)(111), CeO_(2)(110), and CeO_(2)(100) can cause N_(2) to be adsorbed in a ‘‘lying-down" manner, which facilitates the N2 activation and thus leads to much higher NRR activity. Furthermore, from the perspective of electronic structure, we establish two useful descriptors for assessing the NRR activity on ceria with Ovs:The N–N bond strength of the adsorbed N_(2) and the adsorption energy of the *N_(2)H intermediate. This work thus provides direct guidance for the design of more-effective oxide catalysts without the use of scarce metals. 展开更多
关键词 Lewis acid Oxygen vacancy Electrocatalytic NRR ceria First-principle DFT
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Superionic Conductivity in Ceria‑Based Heterostructure Composites for Low‑Temperature Solid Oxide Fuel Cells 被引量:2
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作者 Yifei Zhang Jingjing Liu +7 位作者 Manish Singh Enyi Hu Zheng Jiang Rizwan Raza Faze Wang Jun Wang Fan Yang Bin Zhu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2020年第12期264-283,共20页
Ceria-based heterostructure composite(CHC)has become a new stream to develop advanced low-temperature(300–600°C)solid oxide fuel cells(LTSOFCs)with excellent power outputs at 1000 mW cm−2 level.The state-ofthe-a... Ceria-based heterostructure composite(CHC)has become a new stream to develop advanced low-temperature(300–600°C)solid oxide fuel cells(LTSOFCs)with excellent power outputs at 1000 mW cm−2 level.The state-ofthe-art ceria–carbonate or ceria–semiconductor heterostructure composites have made the CHC systems significantly contribute to both fundamental and applied science researches of LTSOFCs;however,a deep scientific understanding to achieve excellent fuel cell performance and high superionic conduction is still missing,which may hinder its wide application and commercialization.This review aims to establish a new fundamental strategy for superionic conduction of the CHC materials and relevant LTSOFCs.This involves energy band and built-in-field assisting superionic conduction,highlighting coupling effect among the ionic transfer,band structure and alignment impact.Furthermore,theories of ceria–carbonate,e.g.,space charge and multi-ion conduction,as well as new scientific understanding are discussed and presented for functional CHC materials. 展开更多
关键词 ceria-based heterostructure composite ceria–semiconductor Energy band Built-in field Solid oxide fuel cell
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Ceria on alumina support for catalytic pyrolysis of Pavlova sp. microalgae to high-quality bio-oils 被引量:1
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作者 Tevfik Aysu Javier Fermoso Aimaro Sanna 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第3期874-882,共9页
In this work,we report for the first time the in-situ catalytic pyrolysis of Pavlova sp.microalgae,which has been performed in a fixed-bed reactor in presence of Ce/Al2O3-based catalysts.The effects of pyrolysis param... In this work,we report for the first time the in-situ catalytic pyrolysis of Pavlova sp.microalgae,which has been performed in a fixed-bed reactor in presence of Ce/Al2O3-based catalysts.The effects of pyrolysis parameters,such as temperature and catalyst were studied on the products yield distribution and biooil composition,among others.Results showed that all catalysts increased the bio-oil yield with respect to the non-catalytic runs and reduced the O/C ratio from 0.69(Pavlova sp.)to 0.1–0.15,which is close to that of crude oil.In terms of bio-oil oxygen content,Mg Ce/Al2O3presented the best performance with a reduction of more than 30%,from 14.1 to 9.8 wt%,of the oxygen concentration in comparison with thermal pyrolysis.However,Ni Ce/Al2O3gave rise to the highest aliphatics/aromatics fractions.The elemental and gas analysis indicates that N was partially removed from the catalytic bio-oils in the gas phase in forms of NH3and HCN. 展开更多
关键词 Bio-oil Pavlova sp. Pyrolysis Deoxygenation Catalyst ceria
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Origin of high oxide to nitride polishing selectivity of ceria-based slurry in the presence of picolinic acid
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作者 王良咏 刘波 +4 位作者 宋志棠 刘卫丽 封松林 黄丕成 S.V Babu 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第3期497-504,共8页
We report on the investigation of the origin of high oxide to nitride polishing selectivity of ceria-based slurry in the presence of picolinic acid. The oxide to nitride removal selectivity of the ceria slurry with pi... We report on the investigation of the origin of high oxide to nitride polishing selectivity of ceria-based slurry in the presence of picolinic acid. The oxide to nitride removal selectivity of the ceria slurry with picolinic acid is as high as 76.6 in the chemical mechanical polishing. By using zeta potential analyzer, particle size analyzer, horizon profilometer, thermogravimetric analysis and Fourier transform infrared spectroscopy, the pre- and the post-polished wafer surfaces as well as the pre- and the post-used ceria-based slurries are compared. Possible mechanism of high oxide to nitride selectivity with using ceria-based slurry with picolinic acid is discussed. 展开更多
关键词 chemical mechanical polishing ceria oxide over nitride selectivity ORIGIN
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Model-guided design of a high performance and durability Ni nanofiber/ceria matrix solid oxide fuel cell electrode
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作者 Mengzheng Ouyang Antonio Bertei +11 位作者 Samuel J.Cooper Yufei Wu Paul Boldrin Xinhua Liu Masashi Kishimoto Huizhi Wang Max Naylor Marlow Jingyi Chen Xiaolong Chen Yuhua Xia Billy Wu Nigel P.Brandon 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第5期98-112,共15页
Mixed ionic electronic conductors(MIECs)have attracted increasing attention as anode materials for solid oxide fuel cells(SOFCs)and they hold great promise for lowering the operation temperature of SOFCs.However,there... Mixed ionic electronic conductors(MIECs)have attracted increasing attention as anode materials for solid oxide fuel cells(SOFCs)and they hold great promise for lowering the operation temperature of SOFCs.However,there has been a lack of understanding of the performance-limiting factors and guidelines for rational design of composite metal-MIEC electrodes.Using a newly-developed approach based on 3 D-tomography and electrochemical impedance spectroscopy,here for the first time we quantify the contribution of the dual-phase boundary(DPB)relative to the three-phase boundary(TPB)reaction pathway on real MIEC electrodes.A new design strategy is developed for Ni/gadolinium doped ceria(CGO)electrodes(a typical MIEC electrode)based on the quantitative analyses and a novel Ni/CGO fiber-matrix structure is proposed and fabricated by combining electrospinning and tape-casting methods using commercial powders.With only 11.5 vol%nickel,the designer Ni/CGO fiber-matrix electrode shows 32%and 67%lower polarization resistance than a nano-Ni impregnated CGO scaffold electrode and conventional cermet electrode respectively.The results in this paper demonstrate quantitatively using real electrode structures that enhancing DPB and hydrogen kinetics are more efficient strategies to enhance electrode performance than simply increasing TPB. 展开更多
关键词 Solid oxide fuel cells ELECTROSPINNING Electrochemical impedance spectroscopy TOMOGRAPHY 2-d model ceria
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Ni-CeO_(2)黑色防护镀层的光助动电位沉积及光热性能
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作者 吴世伟 杨雨萌 +4 位作者 段雪佳 蓝世锋 李舒铭 朱本峰 卫国英 《材料导报》 EI CAS CSCD 北大核心 2024年第14期77-85,共9页
镍镀层作为一种重要的工程材料,已经在金属涂装等领域得到了广泛的应用,而二氧化铈作为一种重要的稀土氧化物也引起了学者们极大的关注。本工作利用光助动电位沉积法制备了Ni-CeO_(2)复合黑色镀层,分别研究了光照条件、沉积电位范围和... 镍镀层作为一种重要的工程材料,已经在金属涂装等领域得到了广泛的应用,而二氧化铈作为一种重要的稀土氧化物也引起了学者们极大的关注。本工作利用光助动电位沉积法制备了Ni-CeO_(2)复合黑色镀层,分别研究了光照条件、沉积电位范围和沉积温度对镀层结构、组成和性能的影响。采用循环伏安法、塔菲尔极化曲线、接触角测量仪、台阶仪、紫外-可见-近红外分光光度计、发射率测量仪、扫描电子显微镜及附属能谱对不同条件下制备的镀层进行了系列表征。结果表明,光照条件下,沉积电位范围为0~-1.5 V、沉积温度为50℃时制备的Ni-CeO_(2)复合黑色镀层具有最佳的综合性能,其腐蚀电流密度为9.642×10^(-6)A·cm^(-2),水接触角达到125.95°,各波段吸收率均在94%以上且具有0.592的发射率。当沉积电位范围为0~-3.5 V时,镀层具有最高的发射率,达0.757;光照条件除了对CeO_(2)的沉积产生影响之外,也显著提升了Ni的沉积速率。该研究为制备具有高吸收率和发射率的黑色复合镀层提供了一个思路,有望在光热转换和光学仪器中得到应用。 展开更多
关键词 动电位沉积 镍-二氧化铈 复合黑色镀层 沉积电位 沉积温度 光照
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非水溶剂水热法制备CeO_2纳米粉 被引量:48
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作者 王成云 苏庆德 钱逸泰 《化学研究与应用》 CAS CSCD 北大核心 2001年第4期402-405,共4页
本文以甲酸为反应介质 ,采用非水溶剂水热法制备了CeO2 纳米粉。XRD分析结果表明产物为萤石结构的立方相CeO2 ;TEM分析结果表明产物颗粒呈球形 ,粒径分布范围很窄 ;IR和XPS分析结果表明产物中无水、甲酸、NO-3吸附 ;同时采用光声光谱对C... 本文以甲酸为反应介质 ,采用非水溶剂水热法制备了CeO2 纳米粉。XRD分析结果表明产物为萤石结构的立方相CeO2 ;TEM分析结果表明产物颗粒呈球形 ,粒径分布范围很窄 ;IR和XPS分析结果表明产物中无水、甲酸、NO-3吸附 ;同时采用光声光谱对CeO2 纳米粉的量子尺寸效应进行了研究。 展开更多
关键词 CEO2 甲酸 二氧化铈 纳米粉 水热法 制备 非水溶剂
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纳米CeO_2/阴离子聚氨酯复合材料 被引量:17
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作者 刘桂霞 孙多先 洪广言 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2003年第4期192-195,共4页
采用纳米微粒直接分散法合成了纳米 Ce O2 /阴离子聚氨酯复合材料 ,粘度分析表明 ,随着纳米Ce O2 含量的增加 ,复合材料的粘度降低 ;FT- IR分析表明 ,Ce O2 的吸收峰出现蓝移现象 ;TEM和光散射粒径分析表明 ,复合粒子仍以纳米量级存在 ... 采用纳米微粒直接分散法合成了纳米 Ce O2 /阴离子聚氨酯复合材料 ,粘度分析表明 ,随着纳米Ce O2 含量的增加 ,复合材料的粘度降低 ;FT- IR分析表明 ,Ce O2 的吸收峰出现蓝移现象 ;TEM和光散射粒径分析表明 ,复合粒子仍以纳米量级存在 ,平均粒径为 35 nm,且呈单分散状态 ,Ce O2 纳米粒子均匀分散在聚氨酯中。 展开更多
关键词 纳米CEO2 阴离子聚氨酯复合材料 氧化铈 纳米微粒直接分散法
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阳离子聚氨酯/CeO_2纳米复合材料的制备 被引量:23
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作者 刘桂霞 孙多先 洪广言 《应用化学》 CAS CSCD 北大核心 2003年第3期266-268,共3页
The cationic polyurethane/CeO 2 nanocomposite dispersion has been synthesiz ed by adding ceria organosol to pre-polymer of polyurethane and then adding neutralization reagent and water to give an emulsion. FTIR analys... The cationic polyurethane/CeO 2 nanocomposite dispersion has been synthesiz ed by adding ceria organosol to pre-polymer of polyurethane and then adding neutralization reagent and water to give an emulsion. FTIR analysis shows blue shift of the absorpsion band of CeO 2 . TEM micrograph shows that CeO 2 nano- particles ar e uniformly dispersed in polyurethane. Polyurethane/CeO 2 nanocomposite has high absorption at the region lower 350 nm. 展开更多
关键词 阳离子聚氨酯 CEO2 纳米复合材料 制备 二氧化铈
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Ce_(1-x)Gd_xO_(2-x/2)的溶胶-凝胶法合成及其性质 被引量:24
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作者 蒋凯 彭程 +4 位作者 李五聚 王琳 王鸿燕 梁宏伟 孟健 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2001年第8期1279-1282,共4页
利用溶胶 -凝胶法合成了 Ce1-x Gdx O2 -x/ 2 ( x=0 .1~ 0 .6)系列固体电解质 ,系统地研究了其结构、热膨胀系数和导电性 .XRD结果表明 ,1 60℃即完全形成立方萤石结构 .由于溶胶 -凝胶法合成的物质粒度均匀 ,颗粒小 ,故在较低温度 ( 1... 利用溶胶 -凝胶法合成了 Ce1-x Gdx O2 -x/ 2 ( x=0 .1~ 0 .6)系列固体电解质 ,系统地研究了其结构、热膨胀系数和导电性 .XRD结果表明 ,1 60℃即完全形成立方萤石结构 .由于溶胶 -凝胶法合成的物质粒度均匀 ,颗粒小 ,故在较低温度 ( 1 30 0℃ )时即可形成高致密样品 ,此温度明显低于传统的高温固相法烧结温度( 1 60 0~ 1 65 0℃ ) .高温 X射线衍射测得 Ce0 .8Gd0 .2 O1.9的热膨胀系数为 8.1 2 5× 1 0 -6K-1.阻抗谱表明 ,溶胶 -凝胶法合成可减少或消除固体电解质的晶界电阻 ,60 0℃时 Ce0 .8Gd0 .2 O1.9的电导率为 5 .2 6× 1 0 -3S/cm,活化能 Ea=0 .82 e V. 展开更多
关键词 固体电解质 溶胶-凝胶法 氧离子导体 合成 二氧化铈 电导率 阻抗谱 氧化镉
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聚苯胺/纳米氧化铈复合材料的合成与表征 被引量:9
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作者 于跃华 张玉泉 +1 位作者 刘丽敏 李长江 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2005年第2期170-172,共3页
通过溶胶凝胶法制得平均粒径10nm左右氧化铈纳米晶,然后以此纳米晶在位分散聚合得到了聚苯胺/纳米氧化铈复合材料,透射电镜观察这种复合材料具有核壳结构。红外分析表明,纳米氧化铈的存在导致聚苯胺的红外光谱具有明显的蓝移现象,在拉... 通过溶胶凝胶法制得平均粒径10nm左右氧化铈纳米晶,然后以此纳米晶在位分散聚合得到了聚苯胺/纳米氧化铈复合材料,透射电镜观察这种复合材料具有核壳结构。红外分析表明,纳米氧化铈的存在导致聚苯胺的红外光谱具有明显的蓝移现象,在拉曼光谱中1240cm-1和1352cm-1附近的特征峰被认为是由于纳米氧化铈的存在与聚苯胺之间的化学作用产生的,聚苯胺与氧化铈之间有化学键的结合。 展开更多
关键词 聚苯胺 氧化铈 纳米复合材料
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CeO_2/Zn NANOCOMPOSITE COATING BY ELECTRODEPOSITION 被引量:7
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作者 骆心怡 何建平 李顺林 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2002年第2期161-165,共5页
The nanocomposite coating is obtained by electrochemical deposition of the zinc plating solution with ceria nanoparticles (mean diameter 30 nm). The effect of ceria nanoparticles on the electrodeposited zinc coating i... The nanocomposite coating is obtained by electrochemical deposition of the zinc plating solution with ceria nanoparticles (mean diameter 30 nm). The effect of ceria nanoparticles on the electrodeposited zinc coating is stu died by weight loss test, inductively copuled plasma quantometer (ICP), scanning electron microscopy (SEM) and X ray diffraction (XRD), respectively. It is found that under the same electrodeposition conditions, the corrosion resistance of the nanocomposite coating increases obviously while that of the micron composite coating only improves slightly; The ceria content of the nanocomposite coating is more than that of the micron composite coating. Ceria nanoparticles modify the surface morphology and crystal structure of the zinc matrix in correlation with the increase of corrosion resistance. 展开更多
关键词 composite electrodeposition ceria nanoparticles nanocomposite coating corrosion resistance zinc coating
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纳米氧化铈颗粒对电沉积锌层耐蚀性的影响 被引量:33
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作者 骆心怡 何建平 +2 位作者 朱正吼 李顺林 卢翔 《材料保护》 CAS CSCD 北大核心 2003年第1期1-4,共4页
研究了纳米氧化铈颗粒对电沉积锌层耐腐蚀性能的影响。结果表明 ,纳米氧化铈颗粒能显著提高锌镀层的耐蚀性 ;能促使锌镀层晶面产生择优取向 ,并使锌镀层更致密、更均匀 ;在一定范围内增加镀锌液中纳米氧化铈颗粒含量 ,锌镀层的耐蚀性可... 研究了纳米氧化铈颗粒对电沉积锌层耐腐蚀性能的影响。结果表明 ,纳米氧化铈颗粒能显著提高锌镀层的耐蚀性 ;能促使锌镀层晶面产生择优取向 ,并使锌镀层更致密、更均匀 ;在一定范围内增加镀锌液中纳米氧化铈颗粒含量 ,锌镀层的耐蚀性可随之提高 ;此外 。 展开更多
关键词 纳米氧化铈颗粒 电沉积锌层 耐蚀性 影响 纳米复合镀层
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模板剂和制备条件对介孔CeO_2材料性能的影响 被引量:7
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作者 赵旭 罗来涛 +1 位作者 刘成文 李茂康 《化学研究与应用》 CAS CSCD 北大核心 2007年第8期858-862,共5页
在碱性条件下,采用Brij35、Brij35+CTAB、Brij35+PEG20000为模板剂合成了m-CeO2,考察了模板剂种类、合成温度、老化温度及焙烧温度等因素对m-CeO2性能的影响,运用XRD、FT-IR、TEM、N2吸附-脱附和比表面-孔径测定等手段对m-CeO2进行了表... 在碱性条件下,采用Brij35、Brij35+CTAB、Brij35+PEG20000为模板剂合成了m-CeO2,考察了模板剂种类、合成温度、老化温度及焙烧温度等因素对m-CeO2性能的影响,运用XRD、FT-IR、TEM、N2吸附-脱附和比表面-孔径测定等手段对m-CeO2进行了表征。结果表明,表面活性剂的种类、合成温度、老化温度及焙烧温度对介孔材料的性能有较大影响。以Brij35+CTAB为复合模板剂,合成温度、老化温度及焙烧温度分别为40℃、60℃及450℃时,所制备的m-CeO2-BC,其比表面积、孔容、平均孔径和孔壁厚度分别为137.9m2/g、0.194 cm3/g、4.9nm和0.010nm,且孔径分布较集中,晶粒尺寸为5.9nm,为纳米介孔材料。 展开更多
关键词 介孔CeO2 Brij35 CTAB
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超细氧化铈制备工艺研究 被引量:6
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作者 吴文远 薛首峰 +1 位作者 边雪 王振峰 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2015年第6期800-804,共5页
针对传统的沉淀法制备氧化铈工艺,研究了以Ce Cl3溶液为原料的超声喷雾热解法制备超细Ce O2短流程工艺路线.通过TG-DTA实验研究Ce Cl3·7H2O的热分解过程,利用XRD,SEM和TEM表征了沉淀法和喷雾热解法制得的样品,最后从产品、流程及... 针对传统的沉淀法制备氧化铈工艺,研究了以Ce Cl3溶液为原料的超声喷雾热解法制备超细Ce O2短流程工艺路线.通过TG-DTA实验研究Ce Cl3·7H2O的热分解过程,利用XRD,SEM和TEM表征了沉淀法和喷雾热解法制得的样品,最后从产品、流程及资源综合利用等方面对两种工艺进行对比分析.结果表明:Ce Cl3·7H2O在25~233℃为脱水反应,热分解温度为500℃,高于583℃热分解完全;在600℃时超声喷雾热解法制备的Ce O2分散性好、形貌规则,粒度主要分布在0.11~0.80μm,沉淀法制备的Ce O2有团聚现象且形貌不规则.超声喷雾热解法是一种流程短、资源综合利用高且产品形貌规则的清洁工艺技术. 展开更多
关键词 氧化铈 喷雾热解 沉淀 XRD 热力学
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