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蓝星硅材料公司纳米级微硅粉净化装置投产
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《有机硅氟资讯》 2004年第6期28-28,共1页
关键词 蓝星材料有限公司 纳米粉净化装置 烟气粉尘 工业
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简单温和的置换途径制备锂离子电池纳米硅负极材料
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作者 阳海林 梁逵 +2 位作者 杜建龙 田凌云 文晓峰 《电子元件与材料》 CAS CSCD 2017年第7期43-47,共5页
硅被认为是一种很有前景的锂离子电池负极材料,因为它理论比容量高达3580 mAh/g(Li_(3.75)Si,室温下形成)。分别以四氯化硅和锌粉作为硅源与还原剂,通过简单有效的置换反应在500℃的条件下制备出了纳米级硅,该方法制备工艺简单,并且原... 硅被认为是一种很有前景的锂离子电池负极材料,因为它理论比容量高达3580 mAh/g(Li_(3.75)Si,室温下形成)。分别以四氯化硅和锌粉作为硅源与还原剂,通过简单有效的置换反应在500℃的条件下制备出了纳米级硅,该方法制备工艺简单,并且原料成本低廉。所得到的纳米级硅颗粒为150~200 nm的球状,并对其进行电化学性能测试,该材料在0.2 A/g的电流密度下首次脱锂比容量能够达到1 747.7 mAh/g。然后以蔗糖为碳源通过高温热解法合成了硅碳复合材料,其50次循环后的脱锂容量保持率为82%。 展开更多
关键词 纳米级硅 复合材料 温和的温度 置换反应 负极材料 锂离子电池
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纳米保鲜果蜡研制成功
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《化工科技市场》 CAS 2002年第8期44-44,共1页
关键词 纳米保鲜果蜡 研制成功 甘肃省农业科学院 果蜡成膜剂 纳米级硅基氧化物
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钢筋混凝土煤筒仓内衬结构用耐磨料改性研究
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作者 刘超 刘良志 +3 位作者 钟维林 张洁 孙治林 程林 《新型建筑材料》 2024年第9期116-120,共5页
为解决钢筋混凝土煤筒仓内衬结构加固后耐磨层出现裂纹和“白斑”的问题,立足黄骅港务钢筋混凝土煤筒仓内衬耐磨层服役性能技术研究项目,通过在现有耐磨料中掺入硅烷基粉末、吸水树脂(SAP)、纳米级硅灰,通过调整掺量实现憎水、免养护效... 为解决钢筋混凝土煤筒仓内衬结构加固后耐磨层出现裂纹和“白斑”的问题,立足黄骅港务钢筋混凝土煤筒仓内衬耐磨层服役性能技术研究项目,通过在现有耐磨料中掺入硅烷基粉末、吸水树脂(SAP)、纳米级硅灰,通过调整掺量实现憎水、免养护效果。试验结果表明:单掺0.3%硅烷基粉末时,28 d抗压强度最高,为67.3 MPa;双掺0.2%SAP+2.0%纳米级硅灰时,28 d抗压强度最高,为68.9 MPa。硅烷基粉末、SAP、纳米级硅灰的三元改性耐磨料综合性能均优于二元、一元改性组,以0.2%硅烷基粉末+0.2%SAP+2.0%纳米级硅灰复掺时,耐磨料的抗压强度、跳桌流动度、耐磨性能、抗冲击性能、抗裂性能、渗透性能最优,微观结构中水化结晶相排列密实程度及孔洞中结晶相数量均最多、密实程度最高。 展开更多
关键词 耐磨料 烷基粉末 吸水树脂 纳米级硅 水化结晶相
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纳米级钛硅分子筛催化剂快速合成技术
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《科技开发动态》 2004年第4期50-50,共1页
关键词 纳米分子筛 催化剂 快速合成技术 催化性能
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甘肃省农科院研制出新型水果保鲜技术
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《林产化工通讯》 2002年第6期49-49,共1页
关键词 甘肃省农科院 研制 新型 水果保鲜技术 甘肃省农科院 纳米级硅基氧化物果蜡 保鲜 保质 抑制 水分蒸发
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苹果贮藏保鲜的问题与发展方向
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作者 苏岩 庞杰 《中国农村科技》 2003年第12期40-41,共2页
(一)苹果贮藏保鲜中存在的问题 (1)苹果贮藏保鲜多用化学药剂 多菌灵、托布津等化学农药对人、畜有致畸作用,2、4-D中含有极微量的有毒物质对人体的威胁也很大,三唑类有机化合物有一定的致癌性,残留在食品中的二氧化硫能引起严重的过敏... (一)苹果贮藏保鲜中存在的问题 (1)苹果贮藏保鲜多用化学药剂 多菌灵、托布津等化学农药对人、畜有致畸作用,2、4-D中含有极微量的有毒物质对人体的威胁也很大,三唑类有机化合物有一定的致癌性,残留在食品中的二氧化硫能引起严重的过敏反应。因而,化学药剂对于苹果防腐保鲜是有待改进的。 (2) 展开更多
关键词 苹果 贮藏保鲜 化学药剂 冷库设施 生理因素 气调库 冷藏气调集装箱 塑料小包装 纳米氧化物
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Preparation of Nano-sized Silica-alumina Support by Supersolubilizing Self-assembly Technique
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作者 Liu Yan Zhao Shanlin +3 位作者 Li Ping Jin Yingjie Zhang Xin Zhai Yuchun 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2011年第1期32-37,共6页
Nano-sized silica-alumina particles were in-situ synthesized in supersolubilizing reverse micellae.Both the most probable pore diameters and the particle sizes were distributed in nano-scale SiO2-Al2O3 particulates.Th... Nano-sized silica-alumina particles were in-situ synthesized in supersolubilizing reverse micellae.Both the most probable pore diameters and the particle sizes were distributed in nano-scale SiO2-Al2O3 particulates.The influence of SiO2/Al2O3 mass ratio and the surfactant content on the particle size and morphology,pore structure,and acidity was characterized by the low temperature nitrogen adsorption/desorption (BET),SEM,TEM and NH3-TPD methods.The test results indicated that the most probable pore diameter of SiO2-Al2O3 nanoparticles was around 10 nm,the specific surface area was about 223-286 m2 /g,the pore volumes were about 0.48-0.63 cm 3 /g,and the particle sizes of porous SiO2-Al2O3 calcined at 550 ℃ were distributed always in the range between 10 nm to 50 nm.The calcined SiO2-Al2O3 nano-powders showed their acidity being stronger than the porous γ-Al2O3 support. 展开更多
关键词 supersolubility NANOPARTICLE SELF-ASSEMBLY porous silica-alumina
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Metal-assisted chemical etching of silicon and the behavior of nanoscale silicon materials as Li-ion battery anodes 被引量:6
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作者 William McSweeney 《Nano Research》 SCIE EI CAS CSCD 2015年第5期1395-1442,共48页
This review outlines the developments and recent progress in metal-assisted chemical etching of silicon, summarizing a variety of fundamental and innovative processes and etching methods that form a wide range of nano... This review outlines the developments and recent progress in metal-assisted chemical etching of silicon, summarizing a variety of fundamental and innovative processes and etching methods that form a wide range of nanoscale silicon structures. The use of silicon as an anode for Li-ion batteries is also reviewed, where factors such as film thickness, doping, alloying, and their response to reversible lithiation processes are summarized and discussed with respect to battery cell performance. Recent advances in improving the performance of silicon-based anodes in Li-ion batteries are also discussed. The use of a variety of nanostructured silicon structures formed by many different methods as Li-ion battery anodes is outlined, focusing in particular on the influence of mass loading, core-shell structure, conductive additives, and other parameters. The influence of porosity, dopant type, and doping level on the electrochemical response and cell performance of the silicon anodes are detailed based on recent findings. Perspectives on the future of silicon and related materials, and their compositional and structural modifications for energy storage via several electrochemical mechanisms, are also provided. 展开更多
关键词 SILICON Li-ion battery nanostructures NANOWIRES ELECTROCHEMISTRY energy storage ETCHING
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Quantitative analysis of nanoscale deformation fields of a crack-tip in single-crystal silicon 被引量:2
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作者 ZHAO ChunWang XING YongMing 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第6期1088-1092,共5页
A mode II crack in single-crystal silicon was investigated experimentally using high-resolution transmission electron microscopy.Geometric phase analysis and numerical moiré method were employed to map the deform... A mode II crack in single-crystal silicon was investigated experimentally using high-resolution transmission electron microscopy.Geometric phase analysis and numerical moiré method were employed to map the deformation fields of the crack-tip area.The normal strain field maps of the crack-tip area indeed showed the deformation occurs primarily in the vicinity of the dislocations and the normal strains are near zero in the crack-tip area.The shear strain field map shows that the relatively large shear strain is in the crack-tip area.The experimental results were compared with the predictions of linear elastic fracture mechanics.The comparison shows that measured strain distribution ahead of the crack-tip agrees with the predictions of linear elastic fracture mechanics up to 1 nm from the crack-tip. 展开更多
关键词 CRACK-TIP STRAIN high-resolution transmission electron microscopy geometric phase analysis
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Nanoscale superconductivity of ?-Ga islands grown by molecular beam epitaxy
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作者 ZHANG HuiMin PENG JunPing +6 位作者 GUAN JiaQi LI Zhi SONG CanLi WANG LiLi HE Ke MA XuCun XUE QiKun 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第10期89-93,共5页
We report on the preparation and superconductivity of metastable γ-Ga islands on Si(111) substrate. The Ga grows in a typical Volmer-Weber mode at a low temperature of 110 K, resulting in formation of Ga nanoislands ... We report on the preparation and superconductivity of metastable γ-Ga islands on Si(111) substrate. The Ga grows in a typical Volmer-Weber mode at a low temperature of 110 K, resulting in formation of Ga nanoislands at various sizes with the identical γ-phase. In-situ low temperature scanning tunneling spectra reveal quantized electronic states in ultrathin Ga islands. It is found that both the lateral size and thickness of the Ga islands strongly suppress the superconductivity. Due to substantial surface energy contribution, the transition temperature Tc scales inversely with the island thickness and the minimum thickness for the occurrence of superconductivity is calculated to be two monolayers. 展开更多
关键词 γ-Ga SUPERCONDUCTIVITY size effects molecular beam epitaxy
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