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Reconstructing a solid-solid phase transformation pathway in CdSe nanosheets with associated soft ligands

机译:用相关的软配体重建CdSe纳米片中的固-固相变途径

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摘要

Integrated single-crystal-like small and wide-angle X-ray diffraction images of a CdSe nanosheet under pressure provide direct experimental evidence for the detailed pathway of transformation of the CdSe from a wurtzite to a rock-salt structure. Two consecutive planar atomic slips [(001) 〈110〉 in parallel and (102) with a distortion angle of ∼40°] convert the wurtzite-based nanosheet into a saw-like rock-salt nanolayer. The transformation pressure is three times that in the bulk CdSe crystal. Theoretical calculations are in accord with the mechanism and the change in transformation pressure, and point to the critical role of the coordinated amines. Soft ligands not only increase the stability of the wurtzite structure, but also improve its elastic strength and fracture toughness. A ligand extension of 2.3 nm appears to be the critical dimension for a turning point in stress distribution, leading to the formation of wurtzite (001)/zinc-blende (111) stacking faults before rock-salt nucleation.
机译:CdSe纳米片在压力下的整体单晶状小角度和广角X射线衍射图像,为CdSe从纤锌矿转变为盐岩结构的详细途径提供了直接的实验证据。两个连续的平面原子滑移[平行(001)〈110〉,畸变角为〜40°的(102)]将纤锌矿基纳米片转换成锯齿状的盐岩纳米层。相变压力是CdSe体晶体的三倍。理论计算符合机理和相变压力的变化,并指出了配位胺的关键作用。软配体不仅增加纤锌矿结构的稳定性,而且还提高了其弹性强度和断裂韧性。 2.3 nm的配体延伸似乎是应力分布拐点的关键尺寸,导致在岩盐成核之前形成纤锌矿(001)/闪锌矿(111)堆垛层错。

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