...
首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Optical quantum confinement in low dimensional hematite
【24h】

Optical quantum confinement in low dimensional hematite

机译:低维赤铁矿的光量子限制

获取原文
获取原文并翻译 | 示例

摘要

Hematite is considered to be a promising material for various applications, including for example photo-electrochemical cells for solar hydrogen production. Due to limitations in the charge transport properties hematite needs to be in the form of low-dimensional particles or thin films in several of these applications. This may however affect the optical properties, introducing additional complications for efficient design of photo-active devices. In this paper the optical absorption is analyzed in detail as a function of film thickness for 35 thin films of hematite ranging between 2 and 70 nm. Hematite was deposited by atomic layer deposition on FTO-substrates using Fe(CO)_5 and O2 as precursors. It was found that for film thicknesses below 20 nm the optical properties are severely affected as a consequence of quantum confinement. One of the more marked effects is a blue shift of up to 0.3 eV for thinner films of both the indirect and direct transitions, as well as a 0.2 eV shift of the absorption maximum. The data show a difference in quantum confinement for the indirect and the direct transitions, where the probability for the indirect transition decreases markedly and essentially disappears for the thinnest films. Raman measurements showed no peak shift or change in relative intensity for vibrations for the thinnest films indicating that the decrease in indirect transition probability could not be assigned to depression of any specific phonon but instead seems to be a consequence of isotropic phonon confinement. The onset of the indirect transition is found at 1.75 eV for the thickest films and shifted to 2.0 eV for the thinner films. Two direct transitions are found at 2,15 eV and 2.45 eV, which are blue shifted 0.3 and 0.45 eV respectively, when decreasing the film thickness from 20 to 4 nm. Low dimensional hematite, with dimensions small enough for efficient charge transport, thus has a substantially lower absorption in the visible region than expected from bulk values. This knowledge of the intrinsic optical behavior of low dimensional hematite will be of importance in the design of efficient photo-active devices.
机译:赤铁矿被认为是用于各种应用的有前途的材料,包括例如用于生产太阳能氢的光电化学电池。由于电荷传输性能的限制,在其中的一些应用中,赤铁矿需要呈低维颗粒或薄膜的形式。然而,这可能会影响光学性能,从而为光敏器件的有效设计带来了额外的复杂性。在本文中,详细分析了35个赤铁矿薄膜的光吸收与薄膜厚度的关系,薄膜范围在2到70 nm之间。使用Fe(CO)_5和O2作为前体,通过原子层沉积将赤铁矿沉积在FTO基板上。已经发现,对于小于20nm的膜厚度,由于量子限制,光学性能受到严重影响。较明显的影响之一是间接和直接跃迁的较薄薄膜的蓝移高达0.3 eV,最大吸收的蓝移为0.2 eV。数据显示了间接跃迁和直接跃迁的量子限制差异,其中对于最薄的薄膜,间接跃迁的概率显着降低,而基本消失。拉曼测量结果表明,对于最薄的薄膜,振动没有出现峰移动或相对强度变化,这表明间接转变概率的降低不能归因于任何特定声子的降低,而似乎是各向同性声子约束的结果。对于最厚的薄膜,间接转变的开始时间为1.75 eV,对于较薄的薄膜,转变为2.0 eV。在将薄膜厚度从20 nm减小到4 nm时,在2,15 eV和2.45 eV处发现了两个直接跃迁,它们分别蓝移了0.3和0.45 eV。低尺寸的赤铁矿,其尺寸足够小以进行有效的电荷传输,因此在可见光区域的吸收率远低于从体积值预期的吸收率。对低维赤铁矿的固有光学行为的了解在有效光敏器件的设计中将是重要的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号