Expeditious and controllable synthesis of micron flower-like architecture Cu7S4@LSC via Ni ions morphology confinement for asymmetric button supercapacitor - ScienceDirect
Expeditious and controllable synthesis of micron flower-like architecture Cu7S4@LSC via Ni ions morphology confinement for asymmetric button supercapacitor - ScienceDirect
Expeditious and controllable synthesis of micron flower-like architecture Cu7S4@LSC via Ni ions morphology confinement for asymmetric button supercapacitor - ScienceDirect,Construction of highly efficient new binder-free bimetallic metal–organic framework symmetric supercapacitors: considering surface statistical and mor - Journal of Materials Chemistry A (RSC Publishing) DOI:10.1039/D1TA01724A,Recent progress in bimetallic-organic framework materials and their derivatives for supercapacitors - CrystEngComm (RSC Publishing) DOI:10.1039/D4CE00483C,Metal–organic frameworks-derived hollow octadecahedron nanocages for supercapacitors and wearable self-powered tactile stress sensor - ScienceDirect,Adsorption of uranium (VI) by a MgAl-DHBDC/LDH composite: kinetic, mechanistic and thermodynamic studies | Journal of Radioanalytical and Nuclear Chemistry