热光电伏打
材料科学
纳米环
制作
光电子学
红外线的
平版印刷术
等离子体子
吸收率
可见光谱
纳米技术
光学
医学
共发射极
替代医学
物理
病理
反射率
作者
Myeongcheol Go,Dasol Lee,Sang-Hoon Kim,Jun‐Ho Jang,Keon‐Woo Kim,Jae Yong Lee,Sang-Min Shim,Jin Kon Kim,Junsuk Rho
标识
DOI:10.1021/acsami.2c17875
摘要
Plasmonic broad-band absorbers have received much attention because of their high absorption and potential applications for light-absorbing devices such as thermophotovoltaics, solar energy harvesting, and thermal emitters. However, the fabrication of complex structures in a large area and thermostability remains a great challenge. Here, we report a titanium nitride nanoring broad-band absorber that has over 95% average absorption in the visible and near-infrared regions (400-900 nm). Nanoring structures in a large area (inch2) are fabricated by shadow sphere lithography, which can innovatively increase fabrication efficiency. The nanoring absorber showed over 2.3 times higher-temperature increases than flat film under the irradiation of light. These large-scale and broad-band absorbers have potential applications for solar energy conversion devices such as thermophotovoltaics and photothermal devices.
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