论文标题

可稳定的原子层沉积:3D自组装向超暗材料

Metastable atomic layer deposition: 3D self-assembly towards ultra dark materials

论文作者

Ziegler, Mario, Dathe, Andre, Pollok, Kilian, Langenhorst, Falko, Huebner, Uwe, Wang, Dong, Schaaf, Peter

论文摘要

黑色身体材料证明了有前途的候选人可以满足未来的能源需求,因为他们能够从太阳辐射的总带宽中收获能量。在这里,我们报告了高吸收(> 98%)近黑色身体样结构,该结构由二氧化硅支架和Ag纳米颗粒组成,层厚度低于10 um;使用亚稳态原子层沉积(MS-ald)制造,并用于宽的太阳光谱,范围为220 nm至2500 nm。几种效果以协同的方式促进了高吸光度,包括大小和形状的纳米颗粒的明显异质性,粒子质等离子体杂交以及3D层次混合结构中颗粒方向散射的光的捕获。我们建议,将来,MS-ald需要被视为一种简单而有前途的方法,可以制造具有出色宽带吸收的黑体材料。

Black body materials prove promising candidates to meet future energy demands as they are able to harvest energy from the total bandwidth of solar radiation. Here, we report on high absorption (> 98 %) near-black body-like structures consisting of a silica scaffold and Ag nanoparticles with a layer thickness below 10 um; fabricated using metastable atomic layer deposition (MS-ALD) and to be applied for a wide solar spectrum ranging from 220 nm to 2500 nm. Several effects contribute collectively and in a synergistic manner to the high absorbance, including the pronounced heterogeneity of the nanoparticles in size and shape, particle plasmon hybridization and the trapping of omni-directionally scattered light in the 3D hierarchical hybrid structures. We propose that, in the future, MS-ALD needs to be considered as a simple and promising method to fabricate black-body materials with excellent broadband absorption.

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