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    • 2. 发明申请
    • SYNTHESIS AND USE OF IRON OLEATE
    • 铁的合成和使用
    • WO2012001577A1
    • 2012-01-05
    • PCT/IB2011/052708
    • 2011-06-21
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.BURDINSKI, DirkBOHLENDER, Carmen
    • BURDINSKI, DirkBOHLENDER, Carmen
    • C01G49/00C01G49/08C07F15/02B82Y30/00
    • C07F15/025B82Y30/00B82Y40/00C01G49/00C01G49/02C01G49/08C01P2002/82C01P2004/04C01P2004/64C01P2006/42C07C51/412Y10S977/896Y10T428/2989C07C57/12
    • The present invention relates to a method of forming an iron oleate complex comprising the steps of: (a) dissolving an oleate in a low-order alcohol solvent at a temperature of about 35°C to 65°C; (b) adding a non-polar solvent to the solution of step (a); (c) adding an iron salt dissolved in a low-order alcohol to the solution of step (b); (d) agitating the solution of step (c) at a temperature of about 50°C for at least 5 min; (e) cooling the reaction mixture of step (d) to a temperature of about 15°C to 30°C; (f) optionally filtering the reaction mixture of step (e); (g) separating the non-polar solvent phase from the low-order alcohol phase; (h) washing and drying the non-polar solvent phase; (i) removing volatiles from the non-polar solvent phase of step (h) by evaporation; and (j) mixing the product of step (i) with a polar solvent to yield a solid iron oleate complex. The present invention further relates to an iron oleate complex obtainable by the method of the invention, an iron oleate complex of formula I, the use of the iron oleate complex of the invention as precursor for the preparation of nanoparticles, and a method of forming iron oxide nanoparticles comprising the suspension of iron oxide/hydroxide and the iron oleate complex of the invention.
    • 本发明涉及一种形成油酸铁配合物的方法,包括以下步骤:(a)在约35℃至65℃的温度下将油酸酯溶解在低级醇溶剂中; (b)向步骤(a)的溶液中加入非极性溶剂; (c)将溶解在低级醇中的铁盐加入到步骤(b)的溶液中; (d)在约50℃的温度下搅拌步骤(c)的溶液至少5分钟; (e)将步骤(d)的反应混合物冷却至约15℃至30℃的温度; (f)任选地过滤步骤(e)的反应混合物; (g)将非极性溶剂相与低级醇相分离; (h)洗涤和干燥非极性溶剂相; (i)通过蒸发从步骤(h)的非极性溶剂相中除去挥发物; 和(j)将步骤(i)的产物与极性溶剂混合,得到固体油酸铁配合物。 本发明还涉及通过本发明的方法获得的油酸铁配合物,式I的油酸铁配合物,本发明的油酸铁配合物作为制备纳米颗粒的前体的用途,以及形成铁 包含本发明的氧化铁/氢氧化物和油酸铁配合物的悬浮液的氧化物纳米颗粒。
    • 9. 发明申请
    • METHOD FOR PATTERNING A SUBSTRATE SURFACE
    • 用于绘制基板表面的方法
    • WO2005035438A1
    • 2005-04-21
    • PCT/IB2004/052009
    • 2004-10-07
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.BURDINSKI, DirkSHARPE, Ruben, B., A.
    • BURDINSKI, DirkSHARPE, Ruben, B., A.
    • B81C1/00
    • B82Y30/00B05D1/283B82Y10/00B82Y40/00G03F7/0002
    • An elastomeric stamp (10) is provided, which has a bulk surface (12) from which protruding features (14, 14') extend. A barrier layer (20) covers the bulk surface (12) and the protruding features (14, 14'). After applying an ink solution to the elastomeric stamp (10) and drying the elastomeric stamp (10), the elastomeric stamp (10) is brought into contact with a surface (42) of a first substrate (40). The surface (42) of the first substrate (40) has a high affinity with the ink molecules (32), which is utilized to effectively remove the ink molecules (32) from the contact surfaces (16, 16') of the protruding features (14, 14'). Subsequently, the elastomeric stamp (10) is brought into contact with the surface (52) of a second substrate (50). Ink molecules 32 are transferred from the edges (18, 18') of the protruding features (14, 14') to the surface (52) of a second substrate (50), thus forming an ink pattern in the form of a self­assembled monolayer on this surface (52). The patterning method of the present invention allows for the formation of high-definition ink patterns on a substrate (50) using a wide variety of inks.
    • 提供了弹性体印模(10),其具有突出特征(14,14')延伸的体表面(12)。 阻挡层(20)覆盖主体表面(12)和突出特征(14,14')。 在将墨水溶液施加到弹性体印模(10)上并干燥弹性体印模(10)之后,弹性体印模(10)与第一基底(40)的表面(42)接触。 第一衬底(40)的表面(42)与油墨分子(32)具有高亲和力,其用于从突出特征的接触表面(16,16')有效地去除油墨分子(32) (14,14')。 随后,弹性体印模(10)与第二基底(50)的表面(52)接触。 墨水分子32从突出特征(14,14')的边缘(18,18')转移到第二基底(50)的表面(52),从而形成自组装单层形式的墨图形 在该表面(52)上。 本发明的图案化方法允许使用各种各样的油墨在基板(50)上形成高分辨率油墨图案。