Tjaberings Stefanie, Heidelmann Markus, Franzka Steffen, Gröschel André H
Institute for Physical Chemistry and Center for Soft Nanoscience (SoN) University of Münster Corrensstraße 28-30 48149 Münster Germany.
Interdisciplinary Center for Analytics on the Nanoscale (ICAN) University of Duisburg-Essen Carl-Benz-Str. 199 47057 Duisburg Germany.
Small Sci. 2023 Jul 21;3(9):2300071. doi: 10.1002/smsc.202300071. eCollection 2023 Sep.
ABC triblock terpolymers are promising soft templates for organic/inorganic hybrids because of their ability to form nanostructures with complex shapes, multiple compartments, and precisely localized chemistry. Exemplified on multicompartment nanofibers (MCNFs) of triblock terpolymers, it is demonstrated that microdomains can be selectively loaded, thereby giving access to nanoscale multimetallic hybrid materials. MCNFs with micrometer length, homogenous diameter (90 nm), and a helix-on-cylinder morphology are formed from polystyrene--polybutadiene--poly(-butyl methacrylate) (PS--PB--PT). After postmodification (cross-linking/hydrolysis), selective loading with FeCl, PdCl, HPtCl, AgNO, CuCl, or ZnCl leads to a variety of hybrid MCNFs analyzed by transmission electron microscopy, scanning transmission electron microscopy, electron tomography, energy-dispersive X-ray spectroscopy, and atomic force microscopy. Mild sulfonation of the PS shell to polystyrene sulfonate renders the MNCFs water-dispersible and allows the formation of mixed-bimetallic Pt/Pd/Pt@MCNFs and trimetallic Pt/Pd/Ag@MCNFs. It is demonstrated that the order of loading is key to successfully create multimetallic nanostructures. These and other structures can become useful for energy applications as well as in photo- and electrocatalysis.
ABC三嵌段三元共聚物因其能够形成具有复杂形状、多个隔室和精确局部化学性质的纳米结构,而成为有机/无机杂化材料中很有前景的软模板。以三嵌段三元共聚物的多隔室纳米纤维(MCNF)为例,已证明微区可以被选择性地负载,从而获得纳米级多金属杂化材料。由聚苯乙烯-聚丁二烯-聚(甲基丙烯酸丁酯)(PS-PB-PT)形成了具有微米长度、均匀直径(90nm)和圆柱螺旋形态的MCNF。经过后修饰(交联/水解)后,用FeCl、PdCl、HPtCl、AgNO、CuCl或ZnCl进行选择性负载,通过透射电子显微镜、扫描透射电子显微镜、电子断层扫描、能量色散X射线光谱和原子力显微镜对多种杂化MCNF进行分析。将PS壳轻度磺化为聚苯乙烯磺酸盐,使MNCF具有水分散性,并允许形成双金属Pt/Pd/Pt@MCNF和三金属Pt/Pd/Ag@MCNF。已证明负载顺序是成功创建多金属纳米结构的关键。这些结构和其他结构可用于能源应用以及光催化和电催化。