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都市正义:基础、原理与方法 被引量:1
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作者 许小亮 《浙江社会科学》 CSSCI 北大核心 2016年第12期40-47,156,共8页
都市正义的理论基础既不是自由主义,也不是社群主义,而是世界主义。世界主义所提供的跨越性和接近性原理,使得都市正义既与真理相关,也以联合为旨趣。不同于传统的正义形态,其是一种居间型正义:以异质性原理为优先考量,共有性原理为根... 都市正义的理论基础既不是自由主义,也不是社群主义,而是世界主义。世界主义所提供的跨越性和接近性原理,使得都市正义既与真理相关,也以联合为旨趣。不同于传统的正义形态,其是一种居间型正义:以异质性原理为优先考量,共有性原理为根本内容,最小都市原理为基本保障。都市正义强调异质、具体的自我乃是其前提基础。认为都市资源的分配应考量都市领域的不均衡性、交换价值的易变性以及都市空间的不可比较性等要素。 展开更多
关键词 都市正义 居间正义 异质性原理 共有性原理 最小都市原理
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Field controllable electronic properties of MnPSe_(3)/WS_(2) heterojunction for photocatalysis 被引量:1
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作者 FANG Li-mei ZENG Ying +2 位作者 EKHOLM Marcus HU Chun-feng FENG Qing-guo 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第12期3728-3736,共9页
Transition metal dichalcogenides are interesting candidates as photocatalysts for hydrogen evolution reaction.The MnPSe_(3)/WS_(2) heterostructure is hence studied here with first principles calculations by exploring ... Transition metal dichalcogenides are interesting candidates as photocatalysts for hydrogen evolution reaction.The MnPSe_(3)/WS_(2) heterostructure is hence studied here with first principles calculations by exploring its electronic properties under the application of an electric field.It is discovered that the band gap will decrease from the WS_(2) monolayer to the MnPSe_(3)/WS_(2) heterostructure with Perdew-Burke-Ernzerhof functional,while increase slightly when electron correlation is involved.The conduction band minimum of the heterostructure is determined by the MnPSe3 layer,while the valence band maximum is contributed by the WS_(2)layer.The band edges and band gap suggest that the heterostructure will have good photocatalytic properties for water splitting.Moreover,comparing to monolayer WS_(2),the light absorption in both the ultraviolet and visible regions will be enhanced.When an electric field is present,a linear relation is observed between the electric field and the band gap within specific range,which can thus modulate the photocatalytic performance of this heterostructure. 展开更多
关键词 MnPSe_(3) WS_(2) HETEROSTRUCTURE electric field PHOTOCATALYSIS first principles
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