Qiang Xiaolian, Steinhaus Andrea, Chen Chen, Chakroun Ramzi, Gröschel André H
Physical Chemistry and Center for Nanointegration (CENIDE), University of Duisburg Essen, Carl-Benz-Strasse 199, 47057, Duisburg, Germany.
Angew Chem Int Ed Engl. 2019 May 20;58(21):7122-7126. doi: 10.1002/anie.201814014. Epub 2019 Feb 28.
We report on the formation of shape- and surface-anisotropic Janus nanocups (JNCs) by evaporation-induced confinement assembly (EICA) of ABC triblock terpolymers. During microphase separation in spherical confinement, the triblock terpolymer spontaneously adopted a hemispherical shape with an inner concentric lamella-lamella (ll) morphology. Cross-linking and disassembly of the microparticles resulted in well-defined JNCs with different chemistry on the inside and outside. By synthesizing polymers with increasing length of the cross-linkable block, we tuned the mechanical stability of the nanocups, which is relevant to control opening and closing of the cup cavity. We utilize the Janus properties for selective uptake of cargo exemplified by the filling of JNCs with polymer or gold nanoparticles. The directional properties of JNCs suggest applications in locomotion, oil-spill recovery, storage and release, templating, and as nanoreactors with attoliter volume.
我们报道了通过ABC三嵌段三元共聚物的蒸发诱导受限组装(EICA)形成形状和表面各向异性的Janus纳米杯(JNCs)。在球形受限微相分离过程中,三嵌段三元共聚物自发形成具有内部同心层状-层状(ll)形态的半球形。微粒的交联和解组装产生了内外具有不同化学性质的明确JNCs。通过合成可交联嵌段长度增加的聚合物,我们调节了纳米杯的机械稳定性,这与控制杯腔的开合有关。我们利用Janus特性选择性摄取货物,例如用聚合物或金纳米颗粒填充JNCs。JNCs的定向特性表明其在运动、溢油回收、储存和释放、模板以及作为阿托升体积的纳米反应器等方面的应用。