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Colloidal CuFeS2 Nanocrystals: IntermediateFe d-Band Leads to High Photothermal Conversion Efficiency

机译:胶态CuFeS2纳米晶体:中间Fe d-Band导致高光热转换效率

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摘要

We describe the colloidal hot-injection synthesis of phase-pure nanocrystals (NCs) of a highly abundant mineral, chalcopyrite (CuFeS2). Absorption bands centered at around 480 and 950 nm, spanning almost the entire visible and near-infrared regions, encompass their optical extinction characteristics. These peaks are ascribable to electronic transitions from the valence band (VB) to the empty intermediate band (IB), located in the fundamental gap and mainly composed of Fe 3d orbitals. Laser-irradiation (at 808 nm) of an aqueous suspension of CuFeS2 NCs exhibited significant heating, with a photothermal conversion efficiency of 49%. Such efficient heating is ascribable to the carrier relaxation within the broad IB band (owing to the indirect VB–IB gap), as corroborated by transient absorption measurements. The intense absorption and high photothermal transduction efficiency (PTE) of these NCs in the so-called biological window (650–900 nm) make them suitable for photothermal therapy as demonstrated by tumor cell annihilation upon laser irradiation. The otherwise harmless nature of these NCs in dark conditions was confirmed by in vitro toxicitytests on two different cell lines. The presence of the deep Fe levelsconstituting the IB is the origin of such enhanced PTE, which canbe used to design other high performing NC photothermal agents.
机译:我们描述了高度丰富的矿物黄铜矿(CuFeS2)的纯相纳米晶体(NCs)的胶体热注射合成。吸收带集中在大约480和950 nm处,几乎覆盖了整个可见光和近红外区域,涵盖了它们的消光特性。这些峰归因于从价带(VB)到空的中间带(IB)的电子跃迁,该跃迁位于基隙中,主要由Fe 3d轨道组成。 CuFeS2 NCs的水悬浮液的激光照射(在808 nm)显示出显着的加热,光热转化效率为49%。如瞬态吸收测量所证实的,这种有效的加热归因于宽的IB波段内的载流子弛豫(由于间接的VB–IB间隙)。这些NC在所谓的生物窗口(650-900 nm)中的强吸收和高光热传导效率(PTE)使它们适合于光热疗法,如激光照射时肿瘤细胞an灭所证明的那样。这些NC在黑暗条件下的其他无害性质已通过体外毒性得到证实在两个不同的细胞系上进行测试。深铁水平的存在构成IB的是这种增强型PTE的起源,用于设计其他高性能的NC光热剂。

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