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乡村振兴背景下融合人工智能的新农村空地一体化巡逻模式构建
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作者 陈海涛 陈远君 +1 位作者 李宇琪 张志学 《广州市公安管理干部学院学报》 2025年第3期14-20,共7页
在乡村振兴战略背景之下,农村经济得到了快速发展,同时对农村治安防控提出了更高要求。在此背景下,首先分析了农村治安管控现状和存在的问题,结合问题探讨了新技术装备在农村治安管控中的应用,提出了构建新农村空地一体化巡逻模式的方... 在乡村振兴战略背景之下,农村经济得到了快速发展,同时对农村治安防控提出了更高要求。在此背景下,首先分析了农村治安管控现状和存在的问题,结合问题探讨了新技术装备在农村治安管控中的应用,提出了构建新农村空地一体化巡逻模式的方案。该模式旨在通过无人机技术与人工智能技术的深度融合,实现无人机的动态巡逻,并与地面巡逻力量相互配合,构建起高效、智能、立体的农村治安防控体系。在剖析农村治安防控现存弊端时可发现,空地一体化巡逻模式对于提高农村治安防控效能有着重要作用,能够在理论上助力增强应对突发状况的能力,从规划层面促使警力资源得到更合理的配置,为警务模式的创新升级以及现代化发展拓宽思路,进而有望为乡村振兴筑牢治安根基。 展开更多
关键词 治安防控 新农村 空地一体化 无人机技术 人工智能技术
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Metal-organic frameworks-derived nitrogen-doped carbon supported nanostructured PtNi catalyst for enhanced hydrosilylation of 1-octene 被引量:8
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作者 Junfeng Wen yuanjun chen +3 位作者 Shufang Ji Jian Zhang Dingsheng Wang and Yadong Li 《Nano Research》 SCIE EI CAS CSCD 2019年第10期2584-2588,共5页
Here,we successfully developed nano structured PtNi particles supported on n itroge rrdoped carbon(NC),which were obtai ned by carbon izati on of metal-organic frameworks under different temperatures,forming the nano-... Here,we successfully developed nano structured PtNi particles supported on n itroge rrdoped carbon(NC),which were obtai ned by carbon izati on of metal-organic frameworks under different temperatures,forming the nano-PtNi/NC-600,nano-PtNi/NC-800,nano-PtNi/NC-900 and nano-PtNi/NC-1000 catalysts.For hydrosilylation of 1-octene,we found that the nano-PtNi/NC-1000 catalyst exhibits higher activity for anti-Markovnikov hydrosilylation of 1-octene than those of nano-PtNi/NC-600,nano-PtNi/NC-800,nano-PtNi/NC-900 catalysts.Experiments have verified that benefiting from obvious charge transfer from nano-PtNi particles to NC support carbonized at 1,000℃,the nano-PtNi/NC-1000 catalyst achieved almost complete conversion and produce exclusive adduct for anti-Markovnikov hydrosilylation of 1-octene.Importantly,the nano-PtNi/NC-1000 catalyst exhibited good reusability for the hydrosilylation reaction.This work provides a new path to optimize electronic structure of catalysts by support modification to enhance electron transfer between metal active species and supports for highly catalytic performance. 展开更多
关键词 METAL-ORGANIC frameworks NANOSTRUCTURED PtNi particles HYDROSILYLATION NITROGEN-DOPED carbon
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Pd single-atom monolithic catalyst: Functional 3D structure and unique chemical selectivity in hydrogenation reaction 被引量:14
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作者 Zedong Zhang Min Zhou +6 位作者 yuanjun chen Shoujie Liu Haifeng Wang Jian Zhang Shufang Ji Dingsheng Wang Yadong Li 《Science China Materials》 SCIE EI CAS CSCD 2021年第8期1919-1929,共11页
Regulating the selectivity of catalysts in selective hydrogenation reactions at the atomic level is highly desirable but remains a grand challenge. Here we report a simple and practical strategy to synthesize a monoli... Regulating the selectivity of catalysts in selective hydrogenation reactions at the atomic level is highly desirable but remains a grand challenge. Here we report a simple and practical strategy to synthesize a monolithic single-atom catalyst(SAC) with isolated Pd atoms supported on bulk nitrogen-doped carbon foams(Pd-SAs/CNF). Moreover, we demonstrate that the single-atom Pd sites with unique electronic structure endow Pd-SAs/CNF with an isolated site effect, leading to excellent activity and selectivity in 4-nitrophenylacetylene semi-hydrogenation reaction. In addition, benefiting from the great integrity and excellent mechanical strength, monolithic Pd-SAs/CNF catalyst is easy to separate from the reaction system for conducting the subsequent recycling. The cyclic test demonstrates the excellent reusability and stability of monolithic Pd-SAs/CNF catalyst.The discovery of isolated site effect provides a new approach to design highly selective catalysts. And the development of monolithic SACs provides new opportunities to advance the practical applications of single-atom catalysts. 展开更多
关键词 SINGLE-ATOM monolithic catalyst isolated site hydrogenation reaction
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Precise Synthesis at the Atomic Scale 被引量:3
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作者 Shufang Ji Caroline Jun +1 位作者 yuanjun chen Dingsheng Wang 《Precision Chemistry》 2023年第4期199-225,共27页
Precise synthesis at the atomic scale is a highly desirable and controllable route for the preparation of heterogeneous catalysts with the desired structure and properties,which promotes the rational design of highly ... Precise synthesis at the atomic scale is a highly desirable and controllable route for the preparation of heterogeneous catalysts with the desired structure and properties,which promotes the rational design of highly efficient catalysts and facilitates the understanding of structure-properties relationship.The precise construction of the active sites of the catalysts provides important opportunities for atomic insight into the correlation between structure and catalytic performance.In this review,the atomic-level tuning strategies for the precise synthesis of heterogeneous catalysts are summarized with the emphasis on the precise control of the structure of active sites,including single atom sites,dual atom sites and complex active sites.Furthermore,we illustrate the crucial role of atomic-level regulation of structure in determining the catalytic performance by providing typical catalysis examples in different reactions.In the end,some perspectives on the further development of precise synthesis of catalysts at the atomic level are presented. 展开更多
关键词 Precise synthesis heterogeneous catalysts active sites atomic scale CATALYSIS
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