Results 141 to 150 of about 225,251 (360)
Energy‐Efficient Fabrication of Biomimetic Materials for Sustainable Infrastructure Applications
Inspired by nacre's “brick‐and‐mortar” structure, this work develops an energy‐efficient approach that utilizes ice‐templating technology as the structure framework and carbon mineralization for rapid CaCO3 production, resulting in a strong yet tough carbon mineralized material (CMM) under mild conditions while also fixing CO2.
Jingze Chen+4 more
wiley +1 more source
High temperature surface protection [PDF]
Alloys of the MCrAlX type are the basis for high temperature surface protection systems in gas turbines. M can be one or more of Ni, Co, or Fe and X denotes a reactive metal added to enhance oxide scale adherence.
Levine, S. R.
core +1 more source
Rational descriptive classification of duricrusts [PDF]
The term duricrust appears to be extending itself to include calcareous, gypseous, and saline crusts, in addition to crusts composed dominantly of silica and/or of sesquioxides of iron and aluminium, with or without significant contents of dioxides of ...
Dury, G.H.
core +1 more source
Notes on a Study of the Temperature Gradients of Setting Portland Cement. [PDF]
Allerton S. Cushman
openalex +1 more source
Sleep deprivation triggers systemic immune activation characterized by neutrophil accumulation and cytokine release. This study reveals a conserved metabolic‒epigenetic mechanism whereby lactate‐induced H3K18 lactylation upregulates RORα expression, promoting neutrophilic inflammation.
Ren Zhou+15 more
wiley +1 more source
THE ACTION OF SEA-WATER UPON HYDRAULIC CEMENTS. [PDF]
Walter Michaelis, Walter F. Reid
openalex +1 more source
Recyclable Li‐Metal Battery Electrolytes via In Situ Cyclic Carbonate Polymerization
A recyclable polycarbonate electrolyte is synthesized in situ in a lithium‐metal battery. Excellent cell performance is obtained owing to its high conductivity and (electro)chemical stability. The electrolyte is recovered after extended battery cycling, chemically recycled back to monomer, and repolymerized, obtaining comparable cell performance.
Hui Gao+13 more
wiley +1 more source
Critical Electrochemistry Technologies Applicable in Space Exploration
The available resources in space and discuss the application scenarios and challenges of electrochemical methods in four critical domains is analyzed: metallurgical processing of mineral resources, water resources utilization, carbon cycle management in extraterrestrial habitats, and electrical energy storage.
Ruisi Xu+4 more
wiley +1 more source