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A pH-responsive TiO_2-based Pickering emulsion system for in situ catalyst recycling 被引量:6
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作者 Yajuan Hao Yanfang Liu +3 位作者 Rui Yang Xiaoming Zhang Jian Liu Hengquan Yang 《Chinese Chemical Letters》 SCIE CAS CSCD 2018年第6期778-782,共5页
Developing methods for efficient product/catalyst separation and catalyst recycling is meaningful in multi-phase catalytic reactions. Here, we reported a p H-responsive emulsion system stabilized by interfacially acti... Developing methods for efficient product/catalyst separation and catalyst recycling is meaningful in multi-phase catalytic reactions. Here, we reported a p H-responsive emulsion system stabilized by interfacially active TiO2 nanoparticles for achieving in situ product/catalyst separation and catalyst recycling. In this system, emulsification and demulsification process could be easily engineered through tuning the p H values. The emulsion droplets were destroyed completely at a p H value of 3–4, and the solid catalyst distributed in the aqueous phase could be used to the next reaction cycle after removal of the organic product and adjusting the p H to 7–8. Such a p H triggered switchable Pickering emulsion catalytic system not only shows good recyclability of the solid catalyst but also high catalytic efficiency,and could be recycled more than 10 cycles. 展开更多
关键词 interfacially active TiO2 nanoparticles PH-RESPONSIVE Pickering emulsion Catalyst recycling
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Catalytic aquathermolysis of Shengli heavy crude oil with an amphiphilic cobalt catalyst 被引量:1
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作者 Yan-Bin Cao Long-Li Zhang Dao-Hong Xia 《Petroleum Science》 SCIE CAS CSCD 2016年第3期463-475,共13页
An interfacially active cobalt complex,cobalt dodecylbenzenesulfonate,was synthesized.Elemental analysis,atomic absorption spectroscopy,Fourier transform infrared spectroscopy(FT-IR),thermogravimetric analysis,and s... An interfacially active cobalt complex,cobalt dodecylbenzenesulfonate,was synthesized.Elemental analysis,atomic absorption spectroscopy,Fourier transform infrared spectroscopy(FT-IR),thermogravimetric analysis,and surface/interfacial tension determination were performed to investigate the properties of the catalyst.Results showed that the synthesized catalyst showed active interfacial behavior,decreasing the surface tension and interfacial tension between heavy oil and liquid phase to below 30 and 1.5 mN/m,respectively.The catalyst was not thermally degraded at a temperature of 400 ℃,indicating its high thermal stability.Catalytic performance of the catalyst was evaluated by carrying out aquathermolysis.The viscosity determination showed that the viscosity of the heavy oil decreased by 38%.The average molecular weight,group compositions,and average molecular structure of various samples were analyzed using elemental analysis,FT-IR,electrospray ionization Fourier transform ion cyclotron resonance(ESI FT-ICR MS),and ~1H nuclear magnetic resonance.Results indicated that the catalyst could attack the sulfur- and O_2-type heteroatomic compounds in asphaltene and resin,especially the compounds with aromatic structure,leading to a decrease in the molecular weight and then the reduction in the viscosity of heavy oil.Therefore,the synthesized catalyst might find an application in catalytic aquathermolysis of heavy oil,especially for the high-aromaticity heavy oil with high oxygen content. 展开更多
关键词 interfacially active CoDBS Catalytic aquathermolysis Oxygen-contained groups Heavy oil
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原油乳状液稳定性研究Ⅲ北海原油界面活性组分特性 被引量:29
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作者 李明远 《油田化学》 CAS CSCD 北大核心 1997年第3期237-242,256,共7页
研究了北海原油界面活性组分在空气中的氧化,红外、紫外光谱,及作为乳化剂对模型乳状液稳定性的影响。研究结果表明,所有胶质、沥青质组分均含有界面活性物质,其中含较多芳香羰基、芳香碳碳双键的化合物对增加油水乳状液的稳定性... 研究了北海原油界面活性组分在空气中的氧化,红外、紫外光谱,及作为乳化剂对模型乳状液稳定性的影响。研究结果表明,所有胶质、沥青质组分均含有界面活性物质,其中含较多芳香羰基、芳香碳碳双键的化合物对增加油水乳状液的稳定性有重要作用。界面活性组分氧化后羰基浓度增加,作为乳化剂形成的油水乳状液稳定性增大。与胶质相比,沥青质含芳香羰基和芳香碳碳双键较多,分子量较大,在油水界面形成的膜强度较高,所形成的乳状液稳定性也较大。 展开更多
关键词 乳状液 稳定性 原油 界面活性组分 胶质 历青质
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大庆原油活性组分的分离、分析及界面活性 被引量:21
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作者 罗澜 赵濉 +2 位作者 张路 王洪涛 俞稼镛 《油田化学》 CAS CSCD 北大核心 2000年第2期156-158,共3页
采用多次萃取的方法从大庆原油中分离出酸性活性组分 ,研究了酸性活性组分与碱水的乳化和界面张力性质 ,并对该组分进行了结构鉴定。
关键词 界面活性组分 分离 结构鉴定 界面张力 大庆原油
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孤岛原油乳化活性组分剖析 被引量:18
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作者 徐志成 安静仪 +2 位作者 马金石 闫芳 蒋丽金 《油田化学》 CAS CSCD 北大核心 1999年第2期163-166,共4页
对孤岛原油进行了组分分离,对从原油中分离出的界面活性组分、胶质和沥青质进行了分离和结构初步鉴定,研究了他们的碱水乳化性能。结果表明:原油组分的乳化活性随着极性的增强而增强。脂肪有机酸是孤岛原油界面活性物质的主要组分。... 对孤岛原油进行了组分分离,对从原油中分离出的界面活性组分、胶质和沥青质进行了分离和结构初步鉴定,研究了他们的碱水乳化性能。结果表明:原油组分的乳化活性随着极性的增强而增强。脂肪有机酸是孤岛原油界面活性物质的主要组分。沥青质、胶质都含有乳化活性物质,具有乳化性质,其中含羰基( 脂肪羰基和芳香羰基) 、芳香碳碳双键的化合物对乳化性能和乳状液的稳定性起重要作用。 展开更多
关键词 原油 乳化活性 成分
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大庆原油中界面活性组分研究 被引量:12
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作者 管红霞 蒋生祥 +3 位作者 赵亮 刘霞 翁蕊 杨普华 《油田化学》 CAS CSCD 北大核心 2002年第4期358-361,共4页
用体积比 3∶7的 2 0g LNaOH溶液 乙醇液多次萃取酸值 0 .0 6mgKOH g的大庆原油 ,分离出酸性活性组分。将该组分在色谱柱上用不同溶剂洗脱 ,得到极性不同的 5个级分。其中正己烷级分 (6 .4 % )为烷烃 ,苯级分 (4.7% )为芳烃和稠环烃 ,... 用体积比 3∶7的 2 0g LNaOH溶液 乙醇液多次萃取酸值 0 .0 6mgKOH g的大庆原油 ,分离出酸性活性组分。将该组分在色谱柱上用不同溶剂洗脱 ,得到极性不同的 5个级分。其中正己烷级分 (6 .4 % )为烷烃 ,苯级分 (4.7% )为芳烃和稠环烃 ,丙酮级分 (3.5 % )和乙酸 乙醇 (体积比 1∶19)级分 (8.5 % )只含少量脂肪酸。在乙酸乙酯级分 (6 4 .0 % )中 ,用气相色谱 质谱方法鉴定出 17种正构脂肪酸 (C9~C32 )和 13种异构脂肪酸 (C9~C1 9)并测定了在级分中的含量。测定了原油、萃余油、用正庚烷配制的乙酸乙酯级分模拟油 (模拟油 1)和C1 0 ~C30 混合正构烷烃标样模拟油 (模拟油 2 )与不同浓度的NaOH溶液之间的动态界面张力 ,模拟油 1的界面张力低于模拟油 2的界面张力 ,据此认为异构脂肪酸比正构脂肪酸具有较好的界面活性。图 4表 3参 7。 展开更多
关键词 三次采油 石油脂肪酸 分离鉴定 低酸值 油田化学剂 大庆原油 界面活性组分 研究
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克拉玛依原油中活性组分的分离与分析 被引量:7
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作者 李晓波 李之平 《油田化学》 CAS CSCD 北大核心 1999年第4期333-335,340,共4页
用碱醇液萃取法从克拉玛依原油中分离出了界面活性组分并进行了元素分析,通过硅胶柱层析按极性大小将该活性组分分成了5 个级分,对5 个级分进行了红外光谱分析,发现其主要成分是石油酸。用旋转滴法测定了该活性组分及其5 个级分... 用碱醇液萃取法从克拉玛依原油中分离出了界面活性组分并进行了元素分析,通过硅胶柱层析按极性大小将该活性组分分成了5 个级分,对5 个级分进行了红外光谱分析,发现其主要成分是石油酸。用旋转滴法测定了该活性组分及其5 个级分与碱水间的界面张力,结果表明其中的含氮化合物及石油酸具有较高的界面活性,可以使原油与NaOH水溶液的界面张力降至10- 2 m N/m 。 展开更多
关键词 活性组分 分离 原油 注碱水 驱油
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提高PBO纤维/环氧树脂界面相容性的研究进展 被引量:4
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作者 张祯 王斌 +1 位作者 吕钧炜 李辉 《玻璃钢/复合材料》 CSCD 北大核心 2018年第11期104-108,共5页
综述了近年来基于提高PBO纤维与环氧树脂界面相容性从而提高PBO纤维/环氧树脂复合材料整体性能的研究工作;从PBO纤维表面改性引入高表面能物理表面或构筑化学活性位点以及设计PBO纤维/环氧树脂中间界面层的角度出发,分析了所涉及的各类... 综述了近年来基于提高PBO纤维与环氧树脂界面相容性从而提高PBO纤维/环氧树脂复合材料整体性能的研究工作;从PBO纤维表面改性引入高表面能物理表面或构筑化学活性位点以及设计PBO纤维/环氧树脂中间界面层的角度出发,分析了所涉及的各类方法的优缺点,并对该研究方向进行了展望。 展开更多
关键词 PBO纤维 环氧树脂 表面改性 界面增强
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用于不饱和聚酯树脂的消泡剂 被引量:3
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作者 游宇斐 《玻璃钢/复合材料》 CAS CSCD 1997年第1期24-25,共2页
本文分析了不饱和聚酯树脂加工过程中气泡产生的原因,描述了消泡剂的作用、机理和应用以及对产品质量所带来的积极影响。
关键词 不饱和聚酯树脂 界面 活性物质 消泡剂 聚酯树脂
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沥青岩中界面活性沥青质分子结构及其在矿物表面吸附特征
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作者 章雪莹 马俊 +2 位作者 何林 隋红 李鑫钢 《化工进展》 EI CAS CSCD 北大核心 2022年第2期628-636,共9页
重质油固体系(如油砂、沥青岩、油页岩、重质油、油泥等)中因油-水-固三相复杂作用,导致分离困难。本文以印尼沥青岩重质油为例,针对重质组分中界面活性最强的界面活性沥青质的结构及其在矿物质表面吸附特性问题进行研究。通过凝胶渗透... 重质油固体系(如油砂、沥青岩、油页岩、重质油、油泥等)中因油-水-固三相复杂作用,导致分离困难。本文以印尼沥青岩重质油为例,针对重质组分中界面活性最强的界面活性沥青质的结构及其在矿物质表面吸附特性问题进行研究。通过凝胶渗透色谱、红外光谱仪、XPS等对界面活性沥青质的结构进行分析,提出其初步结构。以SiO_(2)为矿物固体模型,在甲苯溶剂环境中,采用QCM-D和AFM研究界面活性沥青质在固体表面的吸附特征,发现该类沥青质分子在SiO_(2)表面的吸附与普通沥青质分子存在较大差异,呈现多层吸附特征,符合Freundlich吸附模型。吸附膜存在较多高分散性团聚体,黏弹性较大,易于形成具有三维结构的强机械性界面膜。该结构和界面吸附特性可为揭示其在油水乳液稳定过程中的机理提供有利基础。 展开更多
关键词 界面 吸附 二氧化硅 界面活性沥青质
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Design concept for electrocatalysts 被引量:50
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作者 Yao Wang Xiaobo Zheng Dingsheng Wang 《Nano Research》 SCIE EI CSCD 2022年第3期1730-1752,共23页
Metal-based electrocatalysts with different sizes(single atoms,nanoclusters,and nanoparticles)show different catalytic behaviors for various electrocatalytic reactions.Regulating the coordination environment of active... Metal-based electrocatalysts with different sizes(single atoms,nanoclusters,and nanoparticles)show different catalytic behaviors for various electrocatalytic reactions.Regulating the coordination environment of active sites with precision to rationally design an efficient electrocatalyst is of great significance for boosting electrocatalytic reactions.This review summarizes the recent process of heterogeneous supported single atoms,nanoclusters,and nanoparticles catalysts in electrocatalytic reactions,respectively,and figures out the construct strategies and design concepts based on their strengths and weaknesses.Specifically,four key factors for enhancing electrocatalytic performance,including electronic structure,coordination environment,support property,and interfacial interactions are proposed to provide an overall comprehension to readers in this field.Finally,some insights into the current challenges and future opportunities of the heterogeneous supported electrocatalysts are provided. 展开更多
关键词 ELECTROCATALYSTS electronic structure coordination environment support effect interfacial interactions
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Interfacial mechanisms of heterogeneous Fenton reactions catalyzed by iron-based materials: A review 被引量:39
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作者 Jie He Xiaofang Yang +1 位作者 Bin Men Dongsheng Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2016年第1期97-109,共13页
The heterogeneous Fenton reaction can generate highly reactive hydroxyl radicals(·OH)from reactions between recyclable solid catalysts and H2O2 at acidic or even circumneutral pH.Hence,it can effectively oxidiz... The heterogeneous Fenton reaction can generate highly reactive hydroxyl radicals(·OH)from reactions between recyclable solid catalysts and H2O2 at acidic or even circumneutral pH.Hence,it can effectively oxidize refractory organics in water or soils and has become a promising environmentally friendly treatment technology.Due to the complex reaction system,the mechanism behind heterogeneous Fenton reactions remains unresolved but fascinating,and is crucial for understanding Fenton chemistry and the development and application of efficient heterogeneous Fenton technologies.Iron-based materials usually possess high catalytic activity,low cost,negligible toxicity and easy recovery,and are a superior type of heterogeneous Fenton catalysts.Therefore,this article reviews the fundamental but important interfacial mechanisms of heterogeneous Fenton reactions catalyzed by iron-based materials..OH,hydroperoxyl radicals/superoxide anions(HO2./O2^-.)and high-valent iron are the three main types of reactive oxygen species(ROS),with different oxidation reactivity and selectivity.Based on the mechanisms of ROS generation,the interfacial mechanisms of heterogeneous Fenton systems can be classified as the homogeneous Fenton mechanism induced by surface-leached iron,the heterogeneous catalysis mechanism,and the heterogeneous reaction-induced homogeneous mechanism.Different heterogeneous Fenton systems catalyzed by characteristic iron-based materials are comprehensively reviewed.Finally,related future research directions are also suggested. 展开更多
关键词 Heterogeneous Fenton reactions ROS interfacial mechanisms iron-based materials
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Interfacial Effects of Superhydrophobic Plant Surfaces: A Review 被引量:28
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作者 Guiyuan Wang Zhiguang Guo Weimin Liu 《Journal of Bionic Engineering》 SCIE EI CSCD 2014年第3期325-345,共21页
Nature is a huge gallery of art involving nearly perfect structures and properties over the millions of years of development. Many plants and animals show water-repellent properties with fine micro-structures, such as... Nature is a huge gallery of art involving nearly perfect structures and properties over the millions of years of development. Many plants and animals show water-repellent properties with fine micro-structures, such as lotus leaf, water skipper and wings of butterfly. Inspired by these special surfaces, the artificial superhydrophobic surfaces have attracted wide attention in both basic research and industrial applications. The wetting properties of superhydrophobic surfaces in nature are affected by the chemical compositions and the surface topographies. So it is possible to realize the biomimetic superhydrophobic surfaces by tuning their surface roughness and surface free energy correspondingly. This review briefly introduces the physical-chemical basis of superhydrophobic plant surfaces in nature to explain how the superhydrophobicity of plant surfaces can be applied to different biomimetic functional materials with relevance to technological applications. Then, three classical effects of natural surfaces are classified: lotus effect, salvinia effect, and petal effect, and the promising strategies to fabricate biomimetic su- perhydrophobic materials are highlighted. Finally, the prospects and challenges of this area in the future are proposed. 展开更多
关键词 interfacial effects SUPERHYDROPHOBICITY plant leaves contact angle BIONICS
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Hollow engineering of sandwich NC@Co/NC@MnO_(2)composites toward strong wideband electromagnetic wave attenuation 被引量:25
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作者 Chenhao Wei Lingzi Shi +5 位作者 Maoqing Li Mukun He Mengjie Li Xinrui Jing Panbo Liu Junwei Gu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2024年第8期194-203,共10页
Multiple hetero-interfaces would strengthen interfacial polarization and boost electromagnetic wave absorption,but still remain the formidable challenges in decreasing filler loadings.Herein,sandwich NC@Co/NC@MnO_(2)c... Multiple hetero-interfaces would strengthen interfacial polarization and boost electromagnetic wave absorption,but still remain the formidable challenges in decreasing filler loadings.Herein,sandwich NC@Co/NC@MnO_(2)composites with hollow cavity,multiple hetero-interfaces,and hierarchical structures have been fabricated via the cooperative processes of self-sacrifice strategy and sequential hydrothermal reaction.In the sandwich composites,middle magnetic components(Co/NC)are wrapped by inner N-doped carbon(NC)matrix and outer hierarchical MnO_(2)nanosheets.Importantly,hollow engineering of sandwich composites with multiple hetero-interfaces greatly facilitates the enhancement of absorption bandwidth without sacrificing the absorption intensity.The maximum reflection loss of sandwich NC@Co/NC@MnO_(2)composites reaches-44.8 dB at 2.5 mm and the effective bandwidths is achieved as wide as 9.6 GHz at 2.3 mm.These results provide us a new insight into preparing efficient electromagnetic wave absorbers by interface engineering and hollow construction. 展开更多
关键词 Interface engineering Sandwich structure Hetero-interfaces interfacial polarization Electromagnetic wave absorption
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Effect of different concentrations of surfactant on the wettability of coal by molecular dynamics simulation 被引量:25
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作者 Junqing Meng Feifei Yin +3 位作者 Shichao Li Ruquan Zhong Zeyuan Sheng Baisheng Nie 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2019年第4期577-584,共8页
Anionic surfactant sodium dodecyl benzene sulfonate(SDBS)at varying concentrations was selected to investigate the influence on the wettability of Zhaozhuang Coal by molecular dynamics simulation.Six groups of water/s... Anionic surfactant sodium dodecyl benzene sulfonate(SDBS)at varying concentrations was selected to investigate the influence on the wettability of Zhaozhuang Coal by molecular dynamics simulation.Six groups of water/surfactant/coal systems with different concentrations were constructed.The influence of surfactant with different concentrations on the wettability of coal was concluded by analyzing various properties from the energetic behaviors to the dynamic characteristics.The results show that the interfacial tension decreases sharply and then rises slowly with the increase of SDBS surfactant concentration,obtaining that surfactants can obviously reduce the interfacial tension.The surfactant molecules could be detected at the water/coal interface through analyzing the system’s relative concentration distribution.In addition,the difference in the wettability of surfactants on coal surfaces is caused by the spatial distribution differences of alkyl chains and the benzene ring of the surfactant molecules.And the negative interaction energy between SDBS and the coal surface indicates that adsorption process is spontaneous.Furthermore,it is of great practical significance for improving the dust reduction effect and reducing the disaster of coal dust by exploring the effects of surfactant molecules on the wettability of coal. 展开更多
关键词 Sodium dodecyl BENZENE SULFONATE Concentration WETTABILITY interfacial tension Molecular dynamics simulation
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Recent advances in joining of SiC-based materials(monolithic SiC and SiC_f/SiC composites):Joining processes,joint strength, and interfacial behavior 被引量:24
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作者 Guiwu LIU Xiangzhao ZHANG +1 位作者 Jian YANG Gunjun QIAO 《Journal of Advanced Ceramics》 SCIE CSCD 2019年第1期19-38,共20页
Silicon carbide(SiC) has been widely concerned for its excellent overall mechanical and physical properties, such as low density, good thermal-shock behavior, high temperature oxidation resistance, and radiation resis... Silicon carbide(SiC) has been widely concerned for its excellent overall mechanical and physical properties, such as low density, good thermal-shock behavior, high temperature oxidation resistance, and radiation resistance; as a result, the SiC-based materials have been or are being widely used in most advanced fields involving aerospace, aviation, military, and nuclear power. Joining of SiC-based materials(monolithic SiC and SiCf/SiC composites) can resolve the problems on poor processing performance and difficulty of fabrication of large-sized and complex-shaped components to a certain extent, which are originated from their high inherent brittleness and low impact toughness.Starting from the introduction to SiC-based materials, joining of ceramics, and joint strength characterization, the joining of SiC-based materials is reviewed by classifying the as-received interlayer materials, involving no interlayer, metallic, glass-ceramic, and organic interlayers. In particular, joining processes(involving joining techniques and parameter conditions), joint strength,interfacial microstructures, and/or reaction products are highlighted for understanding interfacial behavior and for supporting development of application-oriented joining techniques. 展开更多
关键词 SIC CERAMICS SICF/SIC composites joining JOINT strength interfaciAL behavior
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Mechanical Properties and Microstructure of Portland Cement Concrete Prepared with Coral Reef Sand 被引量:22
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作者 王乾坤 LI Peng +2 位作者 田亚坡 CHEN Wei SU Chunyi 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2016年第5期996-1001,共6页
The feasibility of using coral reef sand(CRS) in Portland cement concrete is investigated by testing the mechanical property and microstructure of concrete. The composition, structure and properties of the CRS are a... The feasibility of using coral reef sand(CRS) in Portland cement concrete is investigated by testing the mechanical property and microstructure of concrete. The composition, structure and properties of the CRS are analyzed. Mechanical properties and microstructure of concrete with CRS are studied and compared to concrete with natural river sand. The relationship between the microstructure and performance of CRS concrete is established. The CRS has a porous surface with high water intake capacity, which contributes to the mechanical properties of concrete. The interfacial transition zone between the cement paste and CRS is densified compared to normal concrete with river sand. Hydration products form in the pore space of CRS and interlock with the matrix of cement paste, which increases the strength. The total porosity of concrete prepared with CRS is higher than that with natural sand. The main difference in pore size distribution is the fraction of fine pores in the range of 100 nm. 展开更多
关键词 coral reef sand concrete mechanical properties microstructure interfacial transition zone
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Microwave Absorption of Crystalline Fe/MnO@C Nanocapsules Embedded in Amorphous Carbon 被引量:22
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作者 Gaihua He Yuping Duan Huifang Pang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2020年第4期152-167,共16页
Crystalline Fe/MnO@C core–shell nanocapsules inlaid in porous amorphous carbon matrix(FMCA)was synthesized successfully with a novel confinement strategy.The heterogeneous Fe/MnO nanocrystals are with approximate sin... Crystalline Fe/MnO@C core–shell nanocapsules inlaid in porous amorphous carbon matrix(FMCA)was synthesized successfully with a novel confinement strategy.The heterogeneous Fe/MnO nanocrystals are with approximate single-domain size which gives rise to natural resonance in 2–18 GHz.The addition of MnO2 confines degree of graphitization catalyzed by iron and contributes to the formation of amorphous carbon.The heterogeneous materials composed of crystalline–amorphous structures disperse evenly and its density is significantly reduced on account of porous properties.Meanwhile,adjustable dielectric loss is achieved by interrupting Fe core aggregation and stacking graphene conductive network.The dielectric loss synergistically with magnetic loss endows the FMCA enhanced absorption.The optimal reflection loss(RL)is up to−45 dB,and the effective bandwidth(RL<−10 dB)is 5.0 GHz with 2.0 mm thickness.The proposed confinement strategy not only lays the foundation for designing high-performance microwave absorber,but also offers a general duty synthesis method for heterogeneous crystalline–amorphous composites with tunable composition in other fields. 展开更多
关键词 Crystalline nanocapsule Amorphous carbon Core–shell structure interfacial polarization Microwave absorption
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Interface issues of lithium metal anode for high-energy batteries: Challenges, strategies, and perspectives 被引量:21
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作者 Yiyao Han Bo Liu +6 位作者 Zhen Xiao Wenkui Zhang Xiuli Wang Guoxiang Pan Yang Xia Xinhui Xia Jiangping Tu 《InfoMat》 SCIE CAS 2021年第2期155-174,共20页
Lithium(Li)metal is considered as one of the most promising anode materials for next-generation high-energy-density storage systems.However,the practical application of Li metal anode is hindered by interfacial instab... Lithium(Li)metal is considered as one of the most promising anode materials for next-generation high-energy-density storage systems.However,the practical application of Li metal anode is hindered by interfacial instability and air instability due to the highly reactivity of Li metal.Unstable interface in Li metal batteries(LMBs)directly dictates Li dendrite growth,“dead Li”and low Coulombic efficiency,resulting in inferior electrochemical performance of LMBs and even safety issues.In addition,its sensitivity to ambient air leads to the severe corrosion of Li metal anode,high requirements of production and storage,and increased manufacturing cost.Plenty of efforts in recent years have overcome many bottlenecks in these fields and hastened the practical applications of high-energy-density LMBs.In this review,we focus on emerging methods of these two aspects to fulfill a stable and low cost electrode.In this perspective,design artificial solid electrolyte interphase(SEI)layers,construct three-dimensional conductive current collectors,optimize electrolytes,employ solid-state electrolytes,and modify separators are summarized to be propitious to ameliorate interfacial stability.Meanwhile,ex situ/in situ formed protective layers are highlighted in favor of heightening air stability.Finally,several possible directions for the future research on advanced Li metal anode are addressed. 展开更多
关键词 air stability artificial layer interfacial stability Li metal protection lithium metal anode
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Breaking Through Bottlenecks for Thermally Conductive Polymer Composites:A Perspective for Intrinsic Thermal Conductivity,Interfacial Thermal Resistance and Theoretics 被引量:20
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作者 Junwei Gu Kunpeng Ruan 《Nano-Micro Letters》 SCIE EI CAS CSCD 2021年第7期118-126,共9页
Rapid development of energy,electrical and electronic technologies has put forward higher requirements for the thermal conductivities of polymers and their composites.However,the thermal conductivity coefficient(λ)va... Rapid development of energy,electrical and electronic technologies has put forward higher requirements for the thermal conductivities of polymers and their composites.However,the thermal conductivity coefficient(λ)values of prepared thermally conductive polymer composites are still difficult to achieve expectations,which has become the bottleneck in the fields of thermally conductive polymer composites.Aimed at that,based on the accumulation of the previous research works by related researchers and our research group,this paper proposes three possible directions for breaking through the bottlenecks:(1)preparing and synthesizing intrinsically thermally conductive polymers,(2)reducing the interfacial thermal resistance in thermally conductive polymer composites,and(3)establishing suitable thermal conduction models and studying inner thermal conduction mechanism to guide experimental optimization.Also,the future development trends of the three above-mentioned directions are foreseen,hoping to provide certain basis and guidance for the preparation,researches and development of thermally conductive polymers and their composites. 展开更多
关键词 Thermally conductive polymer composites Intrinsic thermal conductivity interfacial thermal resistance Thermal conduction models Thermal conduction mechanisms
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