量子点
化学
砷化铟
铟
四面体
砷化物
曲面(拓扑)
砷化镓
纳米技术
化学物理
凝聚态物理
结晶学
物理
几何学
有机化学
材料科学
数学
作者
Meeree Kim,Jun-Ho Lee,Jinhwan Jung,Daekwon Shin,Jugyoung Kim,Eunhye Cho,Yan Xing,Hyeonjun Jeong,Seongmin Park,Sang Ho Oh,Yong Hyun Kim,Sohee Jeong
摘要
While the shape-dependent quantum confinement (QC) effect in anisotropic semiconductor nanocrystals has been extensively studied, the QC in facet-specified polyhedral quantum dots (QDs) remains underexplored. Recently, tetrahedral nanocrystals have gained prominence in III-V nanocrystal synthesis. In our study, we successfully synthesized well-faceted tetrahedral InAs QDs with a first excitonic absorption extending up to 1700 nm. We observed an unconventional sizing curve, indicating weaker confinement than for equivalently volumed spherical QDs. The (111) surface states of InAs QDs persist at the conduction band minimum state even after ligand passivation with a significantly reduced band gap, which places tetrahedral QDs at lower energies in the sizing curve. Consequently, films composed of tetrahedral QDs demonstrate an extended photoresponse into the short-wave infrared region, compared to isovolume spherical QD films.
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