Single Crystalline Boron Nanocones: Electric Transport and Field Emission Properties

Single crystalline boron nanocones are obtained by a simple chemical vapor deposition method. Electric conductivity values of boron nanocones are (1.0–7.3) × 10–5 (Ω cm)–1. Results of field emission show the low turn‐on and threshold electric fields of about 3.5 V μm–1 and 5.3 V μm–1, respectively....

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Veröffentlicht in:Advanced materials (Weinheim) 2007-12, Vol.19 (24), p.4480-4485
Hauptverfasser: Wang, X. J., Tian, J. F., Yang, T. Z., Bao, L. H., Hui, C., Liu, F., Shen, C. M., Xu, N. S., Gao, H.-J.
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Sprache:eng
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Zusammenfassung:Single crystalline boron nanocones are obtained by a simple chemical vapor deposition method. Electric conductivity values of boron nanocones are (1.0–7.3) × 10–5 (Ω cm)–1. Results of field emission show the low turn‐on and threshold electric fields of about 3.5 V μm–1 and 5.3 V μm–1, respectively. Boron nanocones with good electrical transport and field emission properties are promising candidates for application in flat panel displays and nanoelectronics building blocks.
ISSN:0935-9648
1521-4095
DOI:10.1002/adma.200701336