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In situ growth of CoPt nanoparticles In porous germania nanospheres

机译:CoPt纳米粒子在多孔锗纳米球中的原位生长

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Mesoporous nanospheres of germania were used as matrix to grow CoPt nanoparticles. The host germania nanospheres were prepared by biomineralization via the recognition of the peptide sequence T-G-H-Q-S-P-G-A-Y-A-A-H. The size of the cobalt/platinum nanoparticles embedded in germania is in the 8-9 run range, as determined by TEM analysis. The porosity of the nanocomposites was confirmed by nitrogen isotherm analysis. MFM analysis confirmed the magnetic properties of the germania nanocomposites. This simple method of preparation of germania nanospheres via biomineralization, followed by growth of CoPt nanoparticles has an attractive potential for preparing new optomagnetic materials. Such nanocomposites for various device fabrications can be produced and potentially be used to target specific applications.
机译:锗的中孔纳米球被用作基质来生长CoPt纳米颗粒。通过识别肽序列T-G-H-Q-S-P-G-A-Y-A-A-H的生物矿化作用制备宿主二氧化锗纳米球。如通过TEM分析所确定的,嵌入在锗中的钴/铂纳米颗粒的尺寸在8-9运行范围内。通过氮等温线分析证实了纳米复合材料的孔隙率。 MFM分析证实了锗纳米复合材料的磁性。通过生物矿化来制备锗烷纳米球的这种简单方法,然后生长CoPt纳米颗粒,具有制备新型光磁材料的诱人潜力。可以生产用于各种器件制造的此类纳米复合材料,并潜在地用于靶向特定应用。

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