National Creative Research Initiative Center for Nanospace-Confined Chemical Reactions, Pohang University of Science and Technology (POSTECH) , Pohang, Gyeongbuk 37673, Korea.
Department of Chemistry, Pohang University of Science and Technology (POSTECH) , Gyeongbuk 37673, Korea.
ACS Appl Mater Interfaces. 2017 Sep 6;9(35):29992-30001. doi: 10.1021/acsami.7b08856. Epub 2017 Aug 25.
This paper reports a novel and adaptable hollow nanoreactor system containing a solution of cucurbituril (CB) inside a silica nanoparticle (CB@h-SiO) which enables the nucleation and formation of nanocrystals (NCs) to be confined at the seed-free interior solution inside the cavity. The above nanospace confinement strategy restricted the volume of medium available for NC formation to the solution inside the cavity to a few tens of nanometers in size and allowed homogeneous NC nucleation to be examined. Harboring of CB@h-SiO in a Pd complex solution confined the nucleation and formation of PdO NCs to the well-isolated nanosized cavity protected by the silica nanoshell, allowing the convoluted formation of clustered PdO NCs to be thoroughly examined. The corresponding temporal investigation indicated that PdO NC clusters evolved via a distinct pathway combining dendritic growth on early nucleated seed NCs and attachment of small intermediate clusters. In addition, the explored strategy was used to fabricate a recyclable nanocatalyst system for selective catalytic oxidation of cinammyl alcohols, featuring a cavity-included FeO/PdO nanocomposite.
本文报道了一种新颖且适应性强的中空纳米反应器系统,其中包含葫芦脲(CB)的溶液,位于硅纳米颗粒(CB@h-SiO)内,可将纳米晶体(NCs)的成核和形成限制在空腔内的无种子内部溶液中。上述纳米空间限制策略将用于 NC 形成的介质体积限制在空腔内的溶液中,尺寸为几十纳米,从而可以检查均匀的 NC 成核。将 CB@h-SiO 容纳在 Pd 配合物溶液中,可将 PdO NC 的成核和形成限制在由硅纳米壳保护的隔离良好的纳米尺寸空腔内,从而可以彻底检查聚集的 PdO NC 的缠结形成。相应的时间研究表明,PdO NC 簇通过结合早期成核种子 NC 上的枝晶生长和小中间簇的附着的独特途径演化。此外,所探索的策略用于制造用于肉桂醇选择性催化氧化的可回收纳米催化剂系统,其特征在于包含空腔的 FeO/PdO 纳米复合材料。