微棒,micro-rods
1)micro-rods微棒
2)Se microrods硒微米棒
1.Then using pre-obtained Se microspheres as raw materials,Se microrods are formed through the process of dissolution-crystallization under ethanol solvothermal conditions.以SeO2和硫脲为原料,在水热条件下制得了硒微米球;然后以硒微米球为硒源,在乙醇溶剂热条件下,通过溶解-晶化过程,获得了硒微米棒。
3)micro-crystal bars微米晶棒
1.Synthesis of zinc phosphate micro-crystal bars by solid-phase chemical reaction at low temperature;低热固相化学反应法合成磷酸锌微米晶棒
4)microrod微米棒
1.Crystal Growth and Luminescent Properties of ZnO Sub-microrods and Microrods;ZnO亚微米和微米棒的晶体生长及发光性质
2.Production of Ti-Al nanomaterials and express microrods;Ti-Al纳米材料制备和微米棒结构表征
3.Using nickel chloride as nickel source and ethylene glycol(EG)as the solvent,β-Ni(OH)2 microrods have been successfully fabricated by the solvothermal method.以NiCl2为镍源,乙二醇(EG)为溶剂,采用溶剂热法成功地制备了β-Ni(OH)2微米棒,制备方法简单、易行。
英文短句/例句

1.Polyaniline Microrods and Microspheres Doped with Heteropoly Acid:Synthesis,Characterization and Gas Sensitivity杂多酸掺杂聚苯胺微米棒、微米球的合成、表征及气敏性能研究
2.STRUCTURAL AND OPTICAL PROPERTIES OF ZnO MICRORODS PREPARED ON SILICON SUBSTRATES BY CHEMICAL SOLUTION GROWTH METHOD溶液法制备的ZnO微米棒的结构与光学性质
3.SYNTHESIS AND PHOTOCATALYTIC PROPERTIES OF MOLYBDENUM TRIOXIDE MICRON-RODS三氧化钼微米棒的制备及其光催化性质研究
4.The synthesis and lithium-ion batteries application of CoV_2O_6 nanowires and microrodsCoV_2O_6纳米线/微米棒的制备及其在锂离子电池中的应用
5.Synthesis of one-dimension gold nanowire or submicrometer rod arrays with template-electrodeposition method模板电沉积法制备一维金亚微米棒、纳米线阵列的研究
6.Continuous Microwave Assisted Pyrolysis of Corn Cob for Producing Bio-Oil玉米棒芯的连续微波裂解制取生物油
7.Preparation of semiconductor CuS nanoparticles and Bi_2S_3 nanorods by microwave irradiation;微波合成半导体CuS纳米粒子和Bi_2S_3纳米棒
8.The Fabrication of Molybdenum Oxide Crystallites by a Controllable Method:from MoO_3 Belts to MoO_2 Rods微晶MoO_3纳米带转变为MoO_2纳米棒的可控水热合成
9.Rod-shaped bacteria are usually from two to four microns long, while rounded ones are generally one micron in diameter.棒状细菌通常有2-4微米长,而圆形细菌的直径一般只有1微米。
10.Fabrication of Cu Microstutures and Self-Assembly of ZnO Nanorods and Au Nanoparticles PatternsCu微结构制备和ZnO纳米棒及Au纳米粒子的图案化自组装
11.Synthesis,Growth Mechanism and Photocatalytic Activities of Microspheres Self-assembled by Titania Nanorods二氧化钛纳米棒自组装微米球的制备、性能及其生长机理
12.Synthesis,Characterization and Photoluminescence of Y_2O_3∶Eu~(3+) Nanorods by the Combination of Microemulsion and Microwave HeatingY_2O_3∶Eu~(3+)纳米棒的微乳液-微波法制备、表征与发光性能
13.Synthesis and Chracteration of Oriented One-dimensional ZnO Micro/nanorod Arrays by a Solution Route;定向生长的一维ZnO微/纳米棒阵列的液相合成与表征
14.Microstructure and Viscoelasticity of PBT/In-Situ Polymerization Modified AT NanocompositesPBT/原位聚合改性凹凸棒粘土纳米复合材料的微结构与粘弹性
15.A Microreactor-Photocatalysis Device Based on ZnO Nanorod Arrays Growth on Inner Walls of Microchannels基于微通道内表面上垂直生长的ZnO纳米棒阵列的微反应器型光催化装置
16.He had finished gouging out a cob,他刚挖空一只玉米棒子,
17.Milwaukee Brewers米尔沃基酿酒商队(棒球)
18.Pink rabbit silicone fingervibe with removable mini vibe. Total dimension: approx.3.4"(8.5 cm). Comes with3 button cell batteries.这款粉红色的小兔手指调情棒带有微型的振荡器。尺寸:3*.5厘米,带有三个纽扣电池。
相关短句/例句

Se microrods硒微米棒
1.Then using pre-obtained Se microspheres as raw materials,Se microrods are formed through the process of dissolution-crystallization under ethanol solvothermal conditions.以SeO2和硫脲为原料,在水热条件下制得了硒微米球;然后以硒微米球为硒源,在乙醇溶剂热条件下,通过溶解-晶化过程,获得了硒微米棒。
3)micro-crystal bars微米晶棒
1.Synthesis of zinc phosphate micro-crystal bars by solid-phase chemical reaction at low temperature;低热固相化学反应法合成磷酸锌微米晶棒
4)microrod微米棒
1.Crystal Growth and Luminescent Properties of ZnO Sub-microrods and Microrods;ZnO亚微米和微米棒的晶体生长及发光性质
2.Production of Ti-Al nanomaterials and express microrods;Ti-Al纳米材料制备和微米棒结构表征
3.Using nickel chloride as nickel source and ethylene glycol(EG)as the solvent,β-Ni(OH)2 microrods have been successfully fabricated by the solvothermal method.以NiCl2为镍源,乙二醇(EG)为溶剂,采用溶剂热法成功地制备了β-Ni(OH)2微米棒,制备方法简单、易行。
5)Cu_2O microrodsCu2O微米棒
1.Cu_2O microrods characterized by XRD and SEM were fabricated under hydrothermal reductive conditions with CuSO_4·5H_2O and NaC_2H_3O_2·3H_2O as main sources and D-sorbitol as reductant.借助X射线衍射(XRD)和扫描电镜(SEM)表征,以CuSO4·5H2O和NaC2H3O2·3H2O为主要原料,D 山梨醇为还原剂,水热还原制备了Cu2O微米棒。
6)sub-micrometer rods亚微米棒
1.Hydro-thermal synthesis and gas sensing properties of ZnO sub-micrometer rods;水热法合成氧化锌亚微米棒及气敏性能研究
延伸阅读

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