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- Ion irradiation to control size, composition and dispersion of metal . . .
Using thin-film perovskite and binary oxides as model systems, we showed ion beams can controllably reduce the size of exsolved nanoparticles down to 2 nm through ion sputtering Meanwhile, we tailored the exsolved nanoparticle composition from unitary metal to metal alloy via ion implantation
- Nano metal oxide-intercalated MXene in-situ prepared by irradiation as . . .
In this work, we prepared MXene Fe 2 O 3 and MXene Cu 2 O composites via irradiation, which enabled the in-situ formation of nanoparticles between the MXene interlayers
- Ion beam irradiation techniques: Enabling the synthesis, modification . . .
In this review, the updated advances in the synthesis of nanomaterials induced by ion beam technology are systematically summarized, including the radiation fabrication behavior of electron beams and other high-energy ion beams
- In situ heavy ion irradiation studies of nanopore shrinkage and . . .
In situ studies show that nanopores can absorb and eliminate a large number of radiation-induced defect clusters Meanwhile, nanopores shrink (self-heal) during radiation, and their
- The In Situ Ion Irradiation Toolbox: Time-Resolved Structure and . . .
Characterizing active processes in situ during irradiation allows the mechanisms at play during the dynamic ion-material interaction process to be deciphered In this review, we examine the in situ characterization techniques utilized for examining material structure, composition, and property evolution under ion irradiation
- In Situ Chemical Reduction
The ISRM technology creates a treatment zone within the aquifer by injection of sodium dithionite, a strong reducing agent that scavenges dissolved oxygen (DO) from the aquifer and reduces ferric iron [Fe(III)], related metals, and oxy-ions
- Metal MXene composites via in situ reduction - Nature Synthesis
Here a strategy for the in situ reduction deposition of various metals (Au, Pd, Ag, Pt, Rh, Ru and Cu) on Ti 3 C 2 T x MXene is demonstrated This study uncovers the guiding principles of the
- The In Situ Ion Irradiation Toolbox: Time-Resolved Structure and . . .
In this review, we examine the in situ characterization techniques utilized for examining material structure, composition, and property evolution under ion irradiation
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