Results 141 to 150 of about 2,060,424 (300)
Piezo‐Coupling Effects in Smart Polymers: Toward Ultrasensitive Sensing and Biomedical Applications
Piezo‐coupling effects are the foundational factors for the development of multifunctional and self‐powered platforms. Central to this advancement is the use of stimuli‐responsive smart polymers, which offer mechanical flexibility, biocompatibility, and simplified structural complexity with improved sensitivity and energy efficiency.
Duc Khanh Tran +6 more
wiley +1 more source
Mesoporous carbon was modified with tungsten carbides by the carbothermal hydrogen reduction of a layer of chemisorbed 1:12 phosphotungstic anions (PW12O403-) on carbon surfaces.
Dai S, Wang XQ, Zhou SH, Zhu Q
core
This work reports the in situ fabrication of Escherichia coli@covalent organic frameworks (E. coli@COFs) in phosphate‐buffered saline. The COFs form an exoskeleton on E. coli, protecting intracellular β‐glucosidase (Ssbgl) while enhancing mass transfer.
Fengmei Liu +6 more
wiley +1 more source
Development of ordered mesoporous carbon-based electrodes for the electrocatalytic oxidation of furfural. [PDF]
Squillaci P +5 more
europepmc +1 more source
This review explores emerging 2D materials beyond graphene, including graphdiyne, phosphorene, borophene, siloxene, MBene, antimonene, and germanene for Li/Na–S batteries. It analyzes their roles as sulfur hosts, metallic anode protectors, separators, and electrolyte fillers, emphasizing polysulfide suppression, dendrite inhibition, and interfacial ...
Naveen Kumar T. R +7 more
wiley +1 more source
Development of a Juglone/Mesoporous Carbon Modified Glassy Carbon Electrode for Ultrasensitive Determination of Melatonin in Dietary Supplements. [PDF]
Smajdor-Baran J, Fendrych K.
europepmc +1 more source
Hydrogenation of cellulose to hexitol with mesoporous carbon supported nickel based catalysts
Hydrogenation of cellulose to hexitol with mesoporous carbon supported nickel based ...
张涛, 郑明远, 王爱琴, 张艳华
core
Comprehensive Review of Synthesis, Structure, and Electrochemical Performance of LiFePO4
Olivine‐structured LiFePO4 (LFP) nanomaterials are the most effective cathode materials for lithium‐ion battery applications. Here, we report how precursor chemistry, synthesis routes, morphology control, carbon engineering, and doping strategies govern phase formation, charge transport, and electrochemical behaviour of LFP cathodes.
Lihui Yin +9 more
wiley +1 more source
HER Response of Titanium Oxynitride/Mesoporous Carbon Composites in Sulfuric Acid: Implications for TiON-Based Support Materials. [PDF]
Taguchi H +5 more
europepmc +1 more source
A disease‐stage synchronized nanozyme platform is developed to treat polymicrobial sepsis by adapting its functions to changing infection environments. The system eliminates multidrug‐resistant bacteria during early infection while reducing inflammation and restoring immune balance during recovery, providing an integrated strategy for infection control
Anlai Zou +11 more
wiley +1 more source

