Results 311 to 320 of about 7,208,414 (402)
The highest experimentally determined focusing efficiency is reported here by using the direct imprinting of all‐inorganic TiO2 metalens arrays. Absolute efficiency greater than 80% and relative efficiency greater than 90% are achieved by optimization of all fabrication parameters controllable in the additive manufacturing process.
Dae Eon Jung+7 more
wiley +1 more source
Arctiin, a lignan compound, enhances adipose tissue browning and energy expenditure by activating the adenosine A<sub>2A</sub> receptor. [PDF]
Gu Y+12 more
europepmc +1 more source
Lean-body-mass composition and resting energy expenditure before and after long-term overfeeding
O. Dériaz+4 more
openalex +1 more source
The nanoscale hybridization of MXene and amorphous metal‐organic framework (MXene–aMOF) achieves exceptional electrochemical stability and ion storage capacity, attributed to the synergistic interplay between the nanoporous surfaces of aMOF and the metal‐like electron conduction of MXene.
Manmatha Mahato+14 more
wiley +1 more source
Adipocyte-specific Steap4 deficiency reduced thermogenesis and energy expenditure in mice. [PDF]
Wang H+10 more
europepmc +1 more source
Water Oxidation to Hydrogen Peroxide Over a Super‐Aerophilic Graphite Catalyst
Design of super‐aerophilic graphite catalyst capable of trapping in situ produced oxygen gas on its surface under the electrolyte environment. By so doing, it is able to moderate intermediate species binding, which is critical to enabling the two‐electron water oxidation reaction to hydrogen peroxide.
Umer Javed+16 more
wiley +1 more source
Influence of Ambient Temperature on Resting Energy Expenditure in Metabolically Healthy Males and Females. [PDF]
Henkel S+7 more
europepmc +1 more source
Selective Electrosynthesis of Methanol from CO2 Over Cu/Cu2P2O7 Via the Formate Pathway
A Cu/Cu2P2O7‐based hybrid catalyst delivers over 50% Faradaic efficiency and >100 mA cm−2 partial current density for methanol electrosynthesis from CO2. The synergy between Cu (111) facets and Cu2P2O7 promotes HCOOH‐mediated pathways, offering a scalable route for sustainable liquid fuel production. Abstract The electrochemical CO2 reduction reaction (
Hyunwoo Kim+12 more
wiley +1 more source