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Herein, a supermolecular‐scale cage‐confinement pyrolysis strategy is proposed to build two dielectric electromagnetic wave absorbents, in which MoO2 nanoparticles are sandwiched uniformly between porous carbon shells and reduced graphene oxide (RGO). Both sandwich structures are derived from hybrid hydrogels doped by two different crosslinkers (with/without oxygen bridge), which can precisely confine...
In article number 2001686, Zhaofeng Chen, Meiling Wang, Jiadong Zhou, Yizhong Huang, and co‐workers realize uniform MoO2 clusters sandwiched between porous carbon shells and RGO support by a supermolecular cage‐confinement pyrolysis route. The introduction of crosslinkers into hydrogel precursors have remarkable adjustment effects on low‐frequency electromagnetic wave absorption traits.
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