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Size-Dependent Oxidation-Induced Phase Engineering for MOFs Derivatives Via Spatial Confinement Stra...

Size-Dependent Oxidation-Induced Phase Engineering for MOFs Derivatives Via Spatial Confinement Stra...

https://devfeature-collection.sl.nsw.gov.au/record/TN_cdi_doaj_primary_oai_doaj_org_article_372e083d68c8491fb811997da7ca55b8

Size-Dependent Oxidation-Induced Phase Engineering for MOFs Derivatives Via Spatial Confinement Strategy Toward Enhanced Microwave Absorption

About this item

Full title

Size-Dependent Oxidation-Induced Phase Engineering for MOFs Derivatives Via Spatial Confinement Strategy Toward Enhanced Microwave Absorption

Publisher

Singapore: Springer Nature Singapore

Journal title

Nano-Micro Letters, 2022-12, Vol.14 (1), p.102-14, Article 102

Language

English

Formats

Publication information

Publisher

Singapore: Springer Nature Singapore

More information

Scope and Contents

Contents

Highlights
The size of metal organic frameworks (MOFs) derivatives was manipulated by a spatial confined growth strategy.
Dielectric polarization is the dominant dissipation mechanism due to the phase hybridization based on size dependent oxidation motion.
The specific reflection loss of synthesized Co/Co
3
O
4
hollow carbon na...

Alternative Titles

Full title

Size-Dependent Oxidation-Induced Phase Engineering for MOFs Derivatives Via Spatial Confinement Strategy Toward Enhanced Microwave Absorption

Identifiers

Primary Identifiers

Record Identifier

TN_cdi_doaj_primary_oai_doaj_org_article_372e083d68c8491fb811997da7ca55b8

Permalink

https://devfeature-collection.sl.nsw.gov.au/record/TN_cdi_doaj_primary_oai_doaj_org_article_372e083d68c8491fb811997da7ca55b8

Other Identifiers

ISSN

2311-6706,2150-5551

E-ISSN

2150-5551

DOI

10.1007/s40820-022-00841-5

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