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The materials exhibit high electrophotographic photosensitivities and low residual potentials.
The materials exhibit high glass transition temperatures (Tg) of 134 °C and 139 °C, respectively.
The LVP/C cathode materials exhibit high discharge specific capacity of 130 mAh g−1 in the first cycle.
The host materials exhibit high glass-transition temperatures (231 310 °C) and high triplet energy levels (2.61 2.73 eV).
The resultant RGO-Pt hybrid materials exhibit high thermal stability, and are soluble in nonpolar organic solvents with the assistance of OA.
The resultant carbon materials exhibit high ORR and OER catalytic activities in both half-cell and single-cell battery measurements.
Similar(48)
In contrast to the CP materials, the NPC materials exhibit higher surface areas.
The developed nanohybrid materials exhibit higher catalytic activity and electrical conductivity compared with those of Pt/graphene CEs.
The 3DOM β-Bi2O3 materials exhibit higher specific capacities and better capacity retention than conventional β-Bi2O3 nanoparticles as anode materials for Li-ion batteries.
Ag nanoparticles (Ag NPs), as one of the most commercialized bactericidal materials, exhibit higher toxicity to microorganisms by penetrating through the membrane and inducing cell death [1, 15, 33].
Remarkably, the NiCo2O4 materials exhibit higher electrocatalytic activity, lower overpotential, better stability and greater tolerance compared to those of NiO and Co3O4 materials synthesized by the same procedure.
More suggestions(15)
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materials exhibit superparamagnetic
materials exhibit piezoelectric
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