Regioselective Magneto-optical Heteronanorods Enabling Chiroptical Activity

Yugang Sun

Chemical Research in Chinese Universities ›› 2020, Vol. 36 ›› Issue (3) : 490 -491.

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Chemical Research in Chinese Universities ›› 2020, Vol. 36 ›› Issue (3) : 490 -491. DOI: 10.1007/s40242-020-0054-x
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Regioselective Magneto-optical Heteronanorods Enabling Chiroptical Activity

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Abstract

Synthesis of colloidal heterostructures with rational design and controllable precision represents a promising strategy for achieving novel properties and applications. Most recently, Zhuang et al. reported a “double-buffer-layer engineering” concept that was capable of regioselectively growing magnetic Fe3O4 nanodomains only at single ends of semiconductor Zn xCd1−xS(0⩽x⩽1) nanorods. The resulting composite nanostructures exhibited chiroptical activity due to the local magnetic fields introduced by regiospecific magnetic nanodomains, highlighting the promise of controlled colloidal chemistry in synthesizing chiroptical nanostructures in the absence of chiral molecules and helical geometries. The work has been published online in Nature Nanotechnology on January 20, 2020.

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Yugang Sun. Regioselective Magneto-optical Heteronanorods Enabling Chiroptical Activity. Chemical Research in Chinese Universities, 2020, 36(3): 490-491 DOI:10.1007/s40242-020-0054-x

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References

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Gao X, Han B, Yang X, Tang Z. Journal of the American Chemical Society, 2019, 141(35): 13700.

[2]

Zhuang Tao-Tao, Li Yi, Gao Xiaoqing, Wei Mingyang, García de Arquer F. Pelayo, Todorović Petar, Tian Jie, Li Gongpu, Zhang Chong, Li Xiyan, Dong Liang, Song Yonghong, Lu Yang, Yang Xuekang, Zhang Libing, Fan Fengjia, Kelley Shana O., Yu Shu-Hong, Tang Zhiyong, Sargent Edward H.. Regioselective magnetization in semiconducting nanorods. Nature Nanotechnology, 2020, 15(3): 192-197.

[3]

Sun Y. Natlional Science Review, 2015, 2: 329.

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