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书目名称Core-Shell and Yolk-Shell Nanocatalysts影响因子(影响力)<br> http://impactfactor.cn/if/?ISSN=BK0238248<br><br> <br><br>书目名称Core-Shell and Yolk-Shell Nanocatalysts影响因子(影响力)学科排名<br> http://impactfactor.cn/ifr/?ISSN=BK0238248<br><br> <br><br>书目名称Core-Shell and Yolk-Shell Nanocatalysts网络公开度<br> http://impactfactor.cn/at/?ISSN=BK0238248<br><br> <br><br>书目名称Core-Shell and Yolk-Shell Nanocatalysts网络公开度学科排名<br> http://impactfactor.cn/atr/?ISSN=BK0238248<br><br> <br><br>书目名称Core-Shell and Yolk-Shell Nanocatalysts被引频次<br> http://impactfactor.cn/tc/?ISSN=BK0238248<br><br> <br><br>书目名称Core-Shell and Yolk-Shell Nanocatalysts被引频次学科排名<br> http://impactfactor.cn/tcr/?ISSN=BK0238248<br><br> <br><br>书目名称Core-Shell and Yolk-Shell Nanocatalysts年度引用<br> http://impactfactor.cn/ii/?ISSN=BK0238248<br><br> <br><br>书目名称Core-Shell and Yolk-Shell Nanocatalysts年度引用学科排名<br> http://impactfactor.cn/iir/?ISSN=BK0238248<br><br> <br><br>书目名称Core-Shell and Yolk-Shell Nanocatalysts读者反馈<br> http://impactfactor.cn/5y/?ISSN=BK0238248<br><br> <br><br>书目名称Core-Shell and Yolk-Shell Nanocatalysts读者反馈学科排名<br> http://impactfactor.cn/5yr/?ISSN=BK0238248<br><br> <br><br>执 发表于 2025-3-21 23:42:16
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Functions and Applications of Core–Shell Materials in Hydrogenation-Related Processesrlayer. In situ and operando techniques together with theoretical calculations reveal the dynamic compositional/structural changes of the core–shell catalysts. The applications of the elaborately designed core–shell materials in measuring the hydrogen spillover distance and as Raman signal enhancerIVORY 发表于 2025-3-22 05:53:59
Fabrication of Core–Shell Structured Metal Nanoparticles@Metal–Organic Frameworks for Heterogeneous nts of metal NPs@MOFs nanocatalysts in heterogeneous thermal catalysis. We hope that this chapter will bring the better insights to construct the enabled metal NPs@MOFs for realization of excellent activity for energetically challenging reactions, high selectivity to valuable products, and long-term手术刀 发表于 2025-3-22 11:21:22
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Functionalization of Plasmonic Photocatalysts by the Introduction of Core–Shell Structureective oxidation of alcohols to corresponding carbonyl compounds in aqueous solutions. By using a two-step photodeposition method, Au@Pd/TiO. samples were successfully prepared and Au@Pd/TiO. with a shell thickness of 1.0 nm quantitatively converted chlorobenzene and 2-propanol to benzene and aceton