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TiB whiskers are in situ synthesized along the "grain boundaries" of large titanium matrix particles and subsequently formed into a unique network architecture.
TiBw are in situ synthesized around the boundaries of the Ti 6Al 4V particles, and subsequently formed into a TiBw network structure.
The interaction of metal and support results in modification of electronic properties of metal particles and subsequently influence their catalytic characteristics.
TiC particles are in situ synthesized around the boundaries of the Ti6Al4V particles, and subsequently formed into a TiCp network structure.
Magnetic pH sensitive particles were produced by precipitating iron oxide inside hollow organically modified silica particles, and subsequently swelling the shell with a hydrophobic pH sensitive dye.
The methane hydrate sample was formed ex-situ using granular ice particles and subsequently transferred into the DSC cell under liquid nitrogen.
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When multiwalled CNTs containing metal particle cores are irradiated with an electron beam, carbon from graphitic shells surrounding the metal particles is ingested into the body of the particle and subsequently emerges as single-walled nanotubes (SWNTs) or multiwalled nanotubes (MWNTs) inside the host nanotubes.
Moreover, the longer deposition time enlarged the particles size and subsequently increases the film thickness which directly affect the specific area and hence on charge discharge times, respectively.
The peptides were trapped on a 0.3 × 5 mm μ precolumn filled with C18 PepMap, 5 μm, 100 Å particles (Dionex) and subsequently separated in a 0.1 × 150 mm analytical NanoEase column filled with Atlantis C18, 3 μm, 100 Å particles (Waters) using a linear gradient ranging from 5% ACN, 0.1% TFA to 50% of 80% ACN, 0.1% TFA over 85 min at a flow rate of 360 nL/min.
Upon sonication, the ethanol phase turned black in color indicating suspended fine particles, and was subsequently decanted.
A change in either nozzle diameter or primary gas flow rate brought about a change in the particle momentum and subsequently, a change in splat shape.
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