Bottom-up grown nanostructures often suffer from significant dimensional inhomogeneity, and for quantum confined heterostructures, this can lead to a corresponding large variation in electronic properties. A high-throughput characterization methodology is applied to >15,000 nanoskived sections of highly strained GaAsP/GaAs radial core/shell quantum well heterostructures revealing high emission uniformity. While scanning electron microscopy shows a wide nanowire diameter spread of 540(-60)(+60) nm, photoluminescence reveals a tightly bounded band-to-band transition energy of 1546(-3)(+4) meV. A highly strained core/shell nanowire design is shown to reduce the dependence of emission on the quantum well width variation significantly more than in the unstrained case.
Improving Quantum Well Tube Homogeneity Using Strained Nanowire Heterostructures.
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作者:Patel Nikesh, Fonseka H Aruni, Zhang Yunyan, Church Stephen, Al-Abri Ruqaiya, Sanchez Ana, Liu Huiyun, Parkinson Patrick
| 期刊: | ACS Applied Materials & Interfaces | 影响因子: | 8.200 |
| 时间: | 2023 | 起止号: | 2023 Mar 1; 15(8):10958-10964 |
| doi: | 10.1021/acsami.2c22591 | ||
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