Vittur Varadee, Kolhatkar Arati G, Shah Shreya, Rusakova Irene, Litvinov Dmitri, Lee T Randall
Department of Chemistry and the Texas Center for Superconductivity, University of Houston, 4800 Calhoun Road, Houston, TX 77204, USA.
Department of Physics and the Texas Center for Superconductivity, University of Houston, 4800 Calhoun Road, Houston, TX 77204, USA.
Beilstein J Nanotechnol. 2017 Aug 14;8:1680-1687. doi: 10.3762/bjnano.8.168. eCollection 2017.
This manuscript describes a new type of nanomaterial, namely superparamagnetic Au@Co nanochains with optical extinctions in the near infrared (NIR). The Au@Co nanochains were synthesized via a one-pot galvanic replacement route involving a redox-transmetalation process in aqueous medium, where Au salt was reduced to form Au shells on Co seed templates, affording hollow Au@Co nanochains. The Au shells serve not only as a protective coating for the Co nanochain cores, but also to give rise to the optical properties of these unique nanostructures. Importantly, these bifunctional, magneto-optical Au@Co nanochains combine the advantages of nanophotonics (extinction at ca. 900 nm) and nanomagnetism (superparamagnetism) and provide a potentially useful new nanoarchitecture for biomedical or catalytic applications that can benefit from both activation by light and manipulation using an external magnetic field.
本手稿描述了一种新型纳米材料,即具有近红外(NIR)光消光特性的超顺磁性金@钴纳米链。金@钴纳米链是通过一锅法电置换路线合成的,该路线涉及水介质中的氧化还原-金属转移过程,其中金盐被还原,在钴种子模板上形成金壳,从而得到中空的金@钴纳米链。金壳不仅作为钴纳米链核心的保护涂层,还赋予了这些独特纳米结构的光学性质。重要的是,这些双功能的磁光金@钴纳米链结合了纳米光子学(约900nm处的消光)和纳米磁性(超顺磁性)的优点,并为生物医学或催化应用提供了一种潜在有用的新型纳米结构,这些应用可受益于光激活和外部磁场操纵。