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磷烯量子点锯齿形边界上的磁性研究
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作者 杨光 弓文平 《北京师范大学学报(自然科学版)》 CAS CSCD 北大核心 2018年第5期583-587,共5页
近些年被成功合成的磷烯,由于其具有独特的空间褶皱结构,以及有限宽度的带隙和很高的载流子迁移率,而备受研究者的关注.本文通过有限温行列式量子蒙特卡罗方法,研究了磷烯量子点的边界磁性随温度的依赖关系.在蜂巢晶格哈伯德模型框架下... 近些年被成功合成的磷烯,由于其具有独特的空间褶皱结构,以及有限宽度的带隙和很高的载流子迁移率,而备受研究者的关注.本文通过有限温行列式量子蒙特卡罗方法,研究了磷烯量子点的边界磁性随温度的依赖关系.在蜂巢晶格哈伯德模型框架下,数值结果表明,一个相对小的相互作用可以在磷烯量子点的锯齿形边界上诱导出类铁磁性,并且这种边缘磁性的居里温度有可能达到室温. 展开更多
关键词 磷烯量子点 边界磁性 量子蒙特卡罗方法 居里温度
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Metal-free graphene quantum dots photosensitizer coupled with nickel phosphide cocatalyst for enhanced photocatalytic hydrogen production in water under visible light 被引量:4
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作者 Liang Zhu Qiudi Yue +3 位作者 Daochuan Jiang Huanlin Chen Rana Muhammad Irfan Pingwu Du 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第11期1753-1761,共9页
Photocatalytic hydrogen(H2)evolution is a promising approach for future sustainable energy utilization.However,it is still a great challenge to develop efficient and stable metal‐free photocatalysts with broadband so... Photocatalytic hydrogen(H2)evolution is a promising approach for future sustainable energy utilization.However,it is still a great challenge to develop efficient and stable metal‐free photocatalysts with broadband solar absorption in the visible region for H2 production.Metal‐free graphene quantum dot(GQD)is an emerging candidate for this purpose because of its good water‐solubility and tunable band gap.On the other hand,metal phosphides(Ni2P,Co2P,etc)have been demonstrated as novel noble‐metal‐free cocatalysts for water splitting,which can efficiently separate electron‐hole pairs and enhance the photocatalytic activities.Herein,we report for the first time on the use of OH‐functionalized GQDs(OH‐GQDs)photosensitizer coupled with Ni2P nanoparticles for photocatalytic H2 production withλ>420 nm light.The H2 production rate is^94 times higher than that of bare OH‐GQDs,which is even comparable to that of OH‐GQDs with 1.0 wt%Pt cocatalyst.This enhancement is probably due to the semiconductor‐cocatalyst interface interaction between Ni2P and OH‐GQDs to facilitate efficient charge transfer process. 展开更多
关键词 Noble‐metal‐free Photocatalysis Hydrogen production OH‐functionalized graphene quantum dotts NI2P
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Construction of nitrogen and phosphorus co-doped graphene quantum dots/Bi5O7I composites for accelerated charge separation and enhanced photocatalytic degradation performance 被引量:4
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作者 Kai Li Mengxia Ji +3 位作者 Rong Chen Qi Jiang Jiexiang Xia Huaming Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第8期1230-1239,共10页
Nitrogen and phosphorus co-doped graphene quantum dot-modified Bi5O7 I(NPG/Bi5O7 I)nanorods were fabricated via a simple solvothermal method.The morphology,structure,and optical properties of the as-prepared samples w... Nitrogen and phosphorus co-doped graphene quantum dot-modified Bi5O7 I(NPG/Bi5O7 I)nanorods were fabricated via a simple solvothermal method.The morphology,structure,and optical properties of the as-prepared samples were investigated by X-ray diffraction,scanning electron microscopy,high-resolution transmission electron microscopy,X-ray photoelectron spectroscopy(XPS),and diffused reflectance spectroscopy.The photocatalytic performance was estimated by degrading the broad-spectrum antibiotics tetracycline and enrofloxacin under visible light irradiation.The photodegradation activity of Bi5O7 I improved after its surface was modified with NPGs,which was attributed to an increase in the photogenerated charge transport rate and a decrease in the electron-hole pair recombination efficiency.From the electron spin resonance spectra,XPS valence band data,and free radical trapping experiment results,the main active substances involved in the photocatalytic degradation process were determined to be photogenerated holes and superoxide radicals.A possible photocatalytic degradation mechanism for NPG/Bi5O7 I nanorods was proposed. 展开更多
关键词 Bi5O7I N P co-doped graphene quantum dots PHOTOCATALYSIS Ionic liquid Charge separation
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