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三角形空位对氮化硼纳米带热输运性质的影响

Effect of triangle vacancy on thermal transport in boron nitride nanoribbons

中文摘要英文摘要

最近,实验观察发现在六角氮化硼中存在三角形空位。利用非平衡格林函数方法,我们研究了包含三角形空位的氮化硼纳米带的热输运性质。三角形空位对锯齿形和扶手椅形氮化硼纳米带的热输运性质的影响是不同的。在锯齿形的氮化硼纳米带中,三角形空位引起反共振的谷。并且硼终端的三角形引起反共振的零传输谷,反共振的零传输谷的数目随着三角形空位几何尺寸的增大而增多。对于包含三角形空位的扶手椅形的氮化硼纳米带,除了一些反共振的谷以外,在透射谱中出现了一个共振峰。这些反共振和共振现象可以通过分析局域态密度和局域热流得到解析。尽管反共振谷和共振峰都是源于准束缚态,他们局域热流的分布是截然不同的,从而导致了输运的差异。此外,氮化硼纳米带的热导随着空位尺寸的增大线性的减小。

Recently, triangle vacancy in hexagonal boron nitride is observed experimentally. Using nonequilibrium Green's function method, we investigate thermal transport properties of boron nitride nanoribbons (BNNRs) with a triangle vacancy. The effect of triangle vacancy on the phonon transmission of zigzagedged BNNRs (Z-BNNRs) is different from that of armchair-edged BNNRs (A-BNNRs). The triangle vacancy induces antiresonant dips in the spectrum of Z-BNNRs. Moreover, the boron-terminated triangle vacancy causes antiresonant zero-transmission dip and the number of the zero-transmission dip increases with the geometrical size of triangle vacancy. For the A-BNNRs with triangle vacancy, except some antiresonant dips, a resonant peak is found in the transmission. The antiresonant and resonant phenomena are explained by analyzing local density of states and local thermal currents. Although the antiresonant dip and the resonant peak are both originated from quasibound states, their distributions of local thermal currents are distinct, which leads to the transport discrepancy. In addition, the thermal conductance of BNNRs decreases linearly with increasing the vacancy size.

杨凯科、陈元平、欧阳滔、谢月娥、钟建新

物理学材料科学晶体学

六角氮化硼纳米带三角形缺陷热输运

Hexagonal boron nitride nanoribbonsTriangle vacancyThermal transport

杨凯科,陈元平,欧阳滔,谢月娥,钟建新.三角形空位对氮化硼纳米带热输运性质的影响[EB/OL].(2011-12-22)[2025-08-22].http://www.paper.edu.cn/releasepaper/content/201112-606.点此复制

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