Near-Infrared-Plasmonic Energy Upconversion in a Nonmetallic Heterostructure for Efficient H2 Evolution from Ammonia Borane

被引:99
作者
Zhang, Zhenyi [1 ]
Liu, Yang [1 ,2 ]
Fang, Yurui [3 ]
Cao, Baosheng [1 ]
Huang, Jindou [1 ]
Liu, Kuichao [1 ]
Dong, Bin [1 ]
机构
[1] Dalian Minzu Univ, Key Lab New Energy & Rare Earth Resource Utilizat, Key Lab Photosensit Mat & Devices Liaoning Prov, Sch Phys & Mat Engn, 18 Liaohe West Rd, Dalian 116600, Peoples R China
[2] Dalian Univ Technol, Sch Mat Sci & Engn, Dalian 116024, Peoples R China
[3] Dalian Univ Technol, Sch Phys, Key Lab Mat Modificat Laser Electron & Ion Beams, Minist Educ, Dalian 116024, Peoples R China
来源
ADVANCED SCIENCE | 2018年 / 5卷 / 09期
基金
中国国家自然科学基金;
关键词
H-2; evolution; lanthanide ions; plasmonic semiconductors; upconversion luminescence; ENHANCED CATALYTIC-ACTIVITY; HYDROGEN GENERATION; VISIBLE-LIGHT; PHOTOCATALYTIC ACTIVITY; GOLD NANORODS; NANOCRYSTALS; LUMINESCENCE; NANOPARTICLES; RESONANCE; NANOSTRUCTURES;
D O I
10.1002/advs.201800748
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Plasmonic metal nanostructures have been widely used to enhance the upconversion efficiency of the near-infrared (NIR) photons into the visible region via the localized surface plasmon resonance (LSPR) effect. However, the direct utilization of low-cost nonmetallic semiconductors to both concentrate and transfer the NIR-plasmonic energy in the upconversion system remains a significant challenge. Here, a fascinating process of NIR-plasmonic energy upconversion in Yb3+/Er3+-doped NaYF4 nanoparticles (NaYF4:Yb-Er NPs)/W18O49 nanowires (NWs) heterostructures, which can selectively enhance the upconversion luminescence by two orders of magnitude, is demonstrated. Combined with theoretical calculations, it is proposed that the NIR-excited LSPR of W18O49 NWs is the primary reason for the enhanced upconversion luminescence of NaYF4:Yb-Er NPs. Meanwhile, this plasmon-enhanced upconversion luminescence can be partly absorbed by the W18O49 NWs to re-excite its higher energy LSPR, thus leading to the selective enhancement of upconversion luminescence for the NaYF4:Yb-Er/W18O49 heterostructures. More importantly, based on this process of plasmonic energy transfer, an NIR-driven catalyst of NaYF4:Yb-Er NPs@W18O49 NWs quasi-core/shell heterostructure, which exhibits a approximate to 35-fold increase in the catalytic H-2 evolution from ammonia borane (BH3NH3) is designed and synthesized. This work provides insight on the development of nonmetallic plasmon-sensitized optical materials that can potentially be applied in photocatalysis, optoelectronic, and photovoltaic devices.
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页数:9
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