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It is found that high temperature led to high color strength (K/S) of ramie fibers.
High temperature led to the improved decomposition rate of ZDC, resulting in the increased thickness of ZnS shell.
The annealing treatment at a high temperature led to the elimination of the metastable phase and improved the electrical conductivity.
This is ascribed to the PL quenching of QDs because the high temperature led to large amount defects generated during preparation.
Analysis of scanning electron microscope images showed that the fine cracks on the surface and resin matrix damage developed during exposure to high temperature led to accelerate alkali penetration, thereby resulting in rapid performance degradation.
Following a known procedure, monodeprotection by treatment with excess LiN3 in DMF at high temperature led to HDP hydroxymethyl tosylate 309 in high yield (Scheme 94).
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Thermal cycling with dwell time at high temperature leads to a mixed delamination crack path (partly within TBC and TGO).
Reheating at high temperature leads to major microstructural changes involving phase transformation, spheroidization and coarsening of carbides formed in the as-cast M2 grade high speed steel.
Further increase of the fraction and perfection of the ordered phase achieved by annealing at high temperature leads to a decrease of the RAF.
In contrast, homogenization annealing at a high temperature leads to the formation of coarse Al6Mn particles with a plate-like shape.
Thus, absorption of hydrogen-atom acceptors such as ester lubricants (or decomposition by-products such as alcohols and carboxylic acids at high temperature) leads to wear protection and friction reduction.
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CEO of Professional Science Editing for Scientists @ prosciediting.com