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Multifunctional colloids with optical, magnetic, and superhydrophobic properties derived from nucleophilic substitution-induced layer-by-layer assembly in organic media

机译:具有光学,磁性和超疏水特性的多功能胶体,其衍生自有机介质中亲核取代诱导的逐层组装

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We demonstrate the successful preparation of multifunctional silica colloids by coating with 2-bromo-2-methylpropionic acid (BMPA)-stabilized quantum dots (BMPA-QDs) and BMPA-stabilized iron oxide particles (BMPA-Fe _3O_4), along with amine-functionalized poly(amidoamine) (PAMA) dendrimers, using layer-by-layer (LbL) assembly based on a nucleophilic substitution (NS) reaction between the bromo and amine groups in organic media. The QDs and Fe_3O_4 nanoparticles used in this study were directly synthesized in a nonpolar solvent (chloroform or toluene), and the oleic acid stabilizers were exchanged with BMPA in the same solvent to minimize chemical and physical damage to the nanoparticles. The direct adsorption of nanoparticles via an NS reaction in organic solvent significantly increased the packing density of the nanoparticles in the lateral dimensions because electrostatic repulsion between neighboring nanoparticles was absent. The multifunctional colloids densely coated with nanoparticles showed excellent characteristics (i.e., superparamagnetism, photoluminescence, and magneto-optical tuning properties) with long-term stability in nonpolar solvents. Furthermore, deposition of the nanocomposite colloids onto flat substrates, followed by coating with a low-surface-energy fluoroalkylsilane polymer, produced a densely packed rugged surface morphology in the colloidal films that displayed superhydrophobic properties with water contact angles greater than 150°.
机译:我们证明了通过涂覆2-溴-2-甲基丙酸(BMPA)稳定的量子点(BMPA-QDs)和BMPA稳定的氧化铁颗粒(BMPA-Fe _3O_4)以及胺-可以成功制备多功能二氧化硅胶体使用基于有机介质中溴和胺基团之间的亲核取代(NS)反应的逐层组装(LbL)组装功能化的聚(酰胺基胺)(PAMA)树状聚合物。本研究中使用的QD和Fe_3O_4纳米粒子是在非极性溶剂(氯仿或甲苯)中直接合成的,油酸稳定剂在同一溶剂中与BMPA进行了交换,以最大程度地减少对纳米粒子的化学和物理损害。由于在相邻纳米颗粒之间不存在静电排斥,因此通过在有机溶剂中的NS反应直接吸附纳米颗粒会显着增加纳米颗粒在横向尺寸上的堆积密度。紧密包覆有纳米颗粒的多功能胶体具有优异的特性(即超顺磁性,光致发光和磁光调谐特性),并在非极性溶剂中具有长期稳定性。此外,将纳米复合胶体沉积在平坦的基底上,然后用低表面能的氟代烷基硅烷聚合物进行涂覆,在胶体膜中产生了紧密堆积的凹凸不平的表面形貌,该胶体膜具有超疏水性,水接触角大于150°。

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