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Competing Interactions between Various Entropic Forces toward Assembly of Pt3Ni Octahedra into a Body-Centered Cubic Superlattice

机译:Pt3Ni八面体组装成体心立方超晶格的各种熵力之间的竞争相互作用。

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Anisotropic nanocrystal assembled supercrystals with open superlattices (SLs) manifest novel and unique properties, but poor understanding of the nucleation/growth mechanisms limits their design and fabrication for practical applications. Using highly anisotropic Pt3Ni octahedral nanocrystals, we have grown large single supercrystals with an open body-centered cubic (bcc) superlattice that has a low filling factor of 26.8%. Synchrotron-based X-ray structural reconstruction fully revealed the coherence of translational and orientational orderings and determined that the constituent octahedra arrange themselves with the vertex-to vertex and face-to-face configurations along the SL[100] and SL[111] directions, respectively. The large face-to-face separation and flexible vertex-to-vertex elastic contact provided the rattle space and supporting axis for local rotations of Pt3Ni octahedra within the bcc superlattice. Development of orientational disordering along with robust preservation of translational ordering during the heating process of a supercrystal in the oleic acid wetting environment confirmed the dominance of rotational entropy of hard octahedra in the formation of the open bcc superlattice. Ultimate achievement of dynamic equilibrium between the vertex-oriented elastic repulsions and the face-oriented attractions of surface-coating ligands governs the structural and mechanical stability of the supercrystal. This discovery provides significant insights into the design and control of geometrical shapes for the fabrication of highly anisotropic nanocrystals into desired open superlattices with tailored optical and electronic properties.
机译:具有开孔超晶格(SLs)的各向异性纳米晶体组装的超晶体表现出新颖而独特的性能,但对成核/生长机理的了解不足,限制了其在实际应用中的设计和制造。使用高度各向异性的Pt3Ni八面体纳米晶体,我们已经生长出具有开放体心立方(bcc)超晶格且填充因子低至26.8%的大型单超晶。基于同步加速器的X射线结构重建完全揭示了平移和定向顺序的一致性,并确定八面体的组成沿SL [100]和SL [111]方向以顶点到顶点和面对面的方式排列, 分别。较大的面对面分离和灵活的顶点间弹性接触为Btc超晶格内Pt3Ni八面体的局部旋转提供了拨浪鼓空间和支撑轴。取向紊乱的发展以及在油酸润湿环境中超晶加热过程中牢固保留平移顺序的事实,证实了硬八面体旋转熵在开放bcc超晶格形成中的优势。顶点取向的弹性斥力和表面涂层配体的面取向的吸引力之间的动态平衡的最终实现决定了超晶的结构和机械稳定性。该发现为将高度各向异性的纳米晶体制造成具有定制的光学和电子特性的所需开放超晶格的几何形状的设计和控制提供了重要的见识。

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