Strong Band Gap Blueshift in Copper (I) Oxide Semiconductor via Bioinspired Route

被引:20
作者
Polishchuk, Iryna [1 ,2 ]
Bianco-Stein, Nuphar [1 ,2 ]
Lang, Arad [1 ,2 ]
Kurashvili, Mariam [3 ,4 ]
Toroker, Maytal Caspary [1 ,2 ]
Katsman, Alexander [1 ,2 ]
Feldmann, Jochen [3 ,4 ]
Pokroy, Boaz [1 ,2 ]
机构
[1] Technion Israel Inst Technol, Dept Mat Sci & Engn, IL-32000 Haifa, Israel
[2] Technion Israel Inst Technol, Russell Berrie Nanotechnol Inst, IL-32000 Haifa, Israel
[3] Ludwig Maximilians Univ Munchen, Fac Phys, D-80799 Munich, Germany
[4] Ludwig Maximilians Univ Munchen, Ctr Nanosci, Photon & Optoelect Grp, D-80799 Munich, Germany
关键词
band gap engineering; bioinspired; biomineralization; blueshift; hybrid semiconductors; incorporation; ANISOTROPIC LATTICE-DISTORTIONS; CALCITE SINGLE-CRYSTALS; BIOGENIC CALCITE; ELASTIC STRAIN; SURFACE; CU2O; NANOPARTICLES; CONDUCTION; SCATTERING; CU2O/TIO2;
D O I
10.1002/adfm.201910405
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Semiconductors have numerous applications in both science and technology. Several methods have been developed to engineer their band gap, which is one of the most important parameters of semiconductors. Here, it is shown that the incorporation of various amino acids into the crystal lattice of copper (I) oxide, akin to the way living organisms incorporate organic macromolecules into minerals during biomineralization, leads to significant shrinkage in the volume of the host unit cell and a strong blueshift in the band gap of up to approximate to 18%. In examining the potential location of the bio-organic molecules within the inorganic host's lattice, a very good fit between the proposed model of incorporation and experimental findings is found. The bioinspired phenomenon of band gap widening is thought to be attributable to the void-induced quantum confinement effect, even though observed in micrometer-sized crystals. This hypothesis is supported by developing a tight-binding model that is found to fit well with the experimental data. The outcome of this research could profoundly impact the fields of light-emitting and spin-based devices as well as opens up a new bioinspired route to tune the band gap of semiconductors.
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页数:9
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