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- 納米Al2O3微粒Nano - Al2O3 particle
- 納米Al2O3顆粒Al2O3 nano-particle
- 納米Al2O3陶瓷nano-Al2O3 ceramics
- 納米Al2O3質(zhì)點(diǎn)Nano-Al203 particle
- 微粒mote
- 納米nanometer
- Ni-W-納米Al2O3復合涂層Ni-W-nano Al2O3 composite coating
- 微粒的microdot
- 納米材料nanophase materials
- 納米技術(shù)nanotechnology
- 碳納米管carbon nano tube
- 并通過(guò)分析填充納米Al2O3的PVDF-HFP膜的FT-IR光譜圖,從微觀(guān)上說(shuō)明了Al2O3與聚合物電解質(zhì)膜中的PVDF-HFP基體存在相互作用。It suggested an interaction between nanometeric Al2O3 particles and PVDF-HFP polymer matrix in polymer electrolyte membrane from the FT-IR spectroscopy.
- 結果表明,低溫固相法得到的納米硫化鎘為立方晶系結構,微粒平均粒徑為15~25 nm。The CdS nanoparticle obtained is cubic crystal structure with average size of 15~25 nm.
- 納米微粒nanoparticle
- 用差熱分析法測定復合材料的玻璃化溫度(tg)發(fā)現,UPR/納米Al2O3復合材料的tg比純UPR高,且經(jīng)表面處理的納米Al2O3填充的UPR的tg更高,這與力學(xué)性能測試結果一致.The glass transition temperature tg of the composite was measured by DSC. It was found that tg of the composite was higher than that of neat UPR resin,and the composite with tread nano-Al2O3 had a higher tg,which was in agreement with the results of mechincal properties.
- ZnO納米微粒ZnO nanoparticles
- 金納米微粒Gold nanoparticles
- Ag納米微粒Ag nanoparticles
- 納米α-Al2O3nano-alumina
- Pd納米微粒Pd nanoparticles