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Ordering and self-organization in nanocrystalline silicon

机译:纳米晶硅中的有序和自组织

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The spontaneous formation of organized nanocrystals in semiconductors has been observed during heteroepitaxial growth and chemical synthesis. The ability to fabricate size-controlled silicon nanocrystals encapsulated by insulating SiO_2 would be of significant interest to the microelectronics industry. But reproducible manufacture of such crystals is hampered by the amorphous nature of SiO_2 and the differing thermal expansion coefficients of the two materials. Previous attempts to fabricate Si nanocrystals failed to achieve control over their shape and crystallographic orientation, the latter property being important in systems such as Si quantum dots. Here we report the self-organization of Si nanocrystals larger than 80 A into brick-shaped crystallites oriented along the (111) crystallographic direction. The nanocrystals are formed by the solid-phase crystallization of nanometre-thick layers of amorphous Si confined between SiO_2 layers. The shape and orientation of the crystallites results in relatively narrow photoluminescence, whereas isotropic particles produce qualitatively different, broad light emission. Our results should aid the development of maskless, reproducible Si nano-fabrication techniques.
机译:在异质外延生长和化学合成过程中已观察到半导体中有组织的纳米晶体的自发形成。制造通过绝缘SiO_2封装的尺寸受控的硅纳米晶体的能力将对微电子工业产生重大意义。但是,这种晶体的可重复生产受到SiO_2的非晶态性质和两种材料不同的热膨胀系数的影响。先前制造Si纳米晶体的尝试未能实现对其形状和晶体学取向的控制,后一特性在诸如Si量子点的系统中很重要。在这里,我们报道大于80 A的Si纳米晶体自组织成沿(111)晶体学方向取向的砖状微晶。纳米晶体是通过固相结晶形成在SiO_2层之间的非晶硅的纳米厚的层而形成的。微晶的形状和取向导致较窄的光致发光,而各向同性的颗粒产生质上不同的宽发光。我们的研究结果将有助于无掩模,可复制的硅纳米制造技术的发展。

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