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成渝地区双城经济圈产业转移与协同布局研究——基于产业转移电力粘性系数分析 被引量:1
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作者 魏阳 段翔兮 +3 位作者 陈玉敏 刘洪利 严磊 肖宝同 《资源开发与市场》 CAS 北大核心 2023年第2期129-138,147,共11页
以2018—2020年成渝地区双城经济圈范围内44个市(区)产业为研究对象,从产业发展趋势及客观规律出发,基于经济与电量数据的高相关性,探索性地建立产业转移电力粘性系数,对成渝地区双城经济圈内城市各产业集聚程度、成长性、规模及转移粘... 以2018—2020年成渝地区双城经济圈范围内44个市(区)产业为研究对象,从产业发展趋势及客观规律出发,基于经济与电量数据的高相关性,探索性地建立产业转移电力粘性系数,对成渝地区双城经济圈内城市各产业集聚程度、成长性、规模及转移粘性进行测算分析。结果表明:①成渝地区四川区域工业、金融业与信息传输、软件和信息技术服务业三大行业集中度更高、产业规模更大、吸附能力更强,产业聚集效应显著;重庆区域住宿和餐饮业、租赁和商务服务业、房地产行业集中度更高、发展更成熟、吸附能力更强,行业发展更具优势。②成渝地区双城经济圈产业发展呈现明显的双核城市极化效应,成都、重庆两大核心城市中心城区各产业转移电力粘性系数均高于成渝地区双城经济圈其余城市。③成渝地区双城经济圈各产业在城市间的发展呈现明显的集聚过度、适度、离散的梯度特征,为产业有序转移和承接提供了方向指引。 展开更多
关键词 成渝地区双城经济圈 产业转移粘性 错位协同
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Synergy of staggered stacking confinement and microporous defect fixation for high‐density atomic Fe^(Ⅱ)‐N_(4)oxygen reduction active sites 被引量:1
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作者 Menghui Chen Yongting Chen +6 位作者 Zhili Yang Jin Luo Jialin Cai Joey Chung‐Yen Jung Jiujun Zhang Shengli Chen Shiming Zhang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第7期1870-1878,共9页
The development of high‐performance nonprecious metal catalysts(NPMCs)to supersede Pt‐based catalysts for the oxygen reduction reaction(ORR)in polymer electrolyte membrane fuel cells is highly desirable but remains ... The development of high‐performance nonprecious metal catalysts(NPMCs)to supersede Pt‐based catalysts for the oxygen reduction reaction(ORR)in polymer electrolyte membrane fuel cells is highly desirable but remains challenging.In this paper,we present a pyrolysis strategy for spatial confinement and active‐site fixation using iron phthalocyanine(FePc),phthalocyanine(Pc)and Zn salts as precursors.In the obtained carbon‐based NPMC with a hierarchically porous nanostructure of thin‐layered carbon nanosheets,nearly 100%of the total Fe species are Fe^(Ⅱ)‐N_(4) active sites.In contrast,pyrolyzing FePc alone forms Fe‐based nanoparticles embedded in amorphous carbon with only 5.9%Fe^(Ⅱ)‐N_(4) active sites.Both experimental characterization and density functional theory calculations reveal that spatial confinement through the staggeredπ–πstacking of Pc macrocycles effectively prevents the demetallation of Fe atoms and the formation of Fe‐based nanoparticles via aggregation.Furthermore,Zn‐induced microporous defects allow the fixation of Fe^(Ⅱ)‐N_(4) active sites.The synergistic effect of staggered stacking confinement and microporous defect fixation results in a high density of atomic Fe^(Ⅱ)‐N_(4) active sites that can enhance the ORR.The optimal Fe^(Ⅱ)‐N_(4)‐C electro‐catalyst outperforms a commercial Pt/C catalyst in terms of half‐wave potential,methanol toler‐ance,and long‐term stability in alkaline media.This modulation strategy can greatly advance efforts to develop high‐performance NPMCs. 展开更多
关键词 Oxygen reduction reaction Synergy strategy Staggered stacking confinement Microporous defects fixation Fe^(Ⅱ)‐N_(4)
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