Nano Titanium Monoxide Crystals and Unusual Superconductivity at 11 K.

Xu, Jijian; Wang, Dong; Yao, Heliang; Bu, Kejun; Pan, Jie; He, Jianqiao; Xu, Fangfang; Hong, Zhanglian et al. · Adv Mater · 2018

basic_science · Level V

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Abstract

Nano TiO<sub>2</sub> is investigated intensely due to extraordinary photoelectric performances in photocatalysis, new-type solar cells, etc., but only very few synthesis and physical properties have been reported on nanostructured TiO or other low valent titanium-containing oxides. Here, a core-shell nanoparticle made of TiO core covered with a ≈5 nm shell of amorphous TiO<sub>1+</sub><sub>x</sub> is newly constructed via a controllable reduction method to synthesize nano TiO core and subsequent soft oxidation to form the shell (TiO<sub>1+</sub><sub>x</sub> ). The physical properties measurements of electrical transport and magnetism indicate these TiO@TiO<sub>1+</sub><sub>x</sub> nanocrystals are a type-ІІ superconductor of a recorded T<sub>c</sub><sup>onset</sup> = 11 K in the binary Ti-O system. This unusual superconductivity could be attributed to the interfacial effect due to the nearly linear gradient of O/Ti ratio across the outer amorphous layer. This novel synthetic method and enhanced superconductivity could open up possibilities in interface superconductivity of nanostructured composites with well-controlled interfaces.