Layer-by-Layer Sorting of Rhenium Disulfide via High-Density Isopycnic Density Gradient Ultracentrifugation.

Kang, Joohoon; Sangwan, Vinod K; Wood, Joshua D; Liu, Xiaolong; Balla, Itamar; Lam, David; Hersam, Mark C · Nano Lett · 2016

basic_science · Level V

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Abstract

Isopycnic density gradient ultracentrifugation (iDGU) has been widely applied to sort nanomaterials by their physical and electronic structure. However, the commonly used density-gradient medium iodixanol has a finite maximum buoyant density that prevents the use of iDGU for high-density nanomaterials. Here, we overcome this limit by adding cesium chloride (CsCl) to iodixanol, thus increasing its maximum buoyant density to the point where the high-density two-dimensional nanomaterial rhenium disulfide (ReS<sub>2</sub>) can be sorted in a layer-by-layer manner with iDGU. The resulting aqueous ReS<sub>2</sub> dispersions show photoluminescence at ∼1.5 eV, which is consistent with its direct bandgap semiconductor electronic structure. Furthermore, photocurrent measurements on thin films formed from solution-processed ReS<sub>2</sub> show a spectral response that is consistent with optical absorbance and photoluminescence data. In addition to providing a pathway for effective solution processing of ReS<sub>2</sub>, this work establishes a general methodology for sorting high-density nanomaterials via iDGU.