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Mechanism of light-induced desorption of H2O from SbSI nanowires' surface has been discussed.
Cavitation behavior of FSPed surface has been discussed using mechanical properties and microstructure.
In this work, the possibility of direct tool path generation on the T-spline surface has been discussed.
The physisorbed H2O surface has been discussed above with an Fe2OH site from the original bulk structure, an FeOH2 terminal group (molecular adsorbed H2O) and no H+ on the Fe3O sites.
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Different modifications of electrodes in the context of enhancing compatibility of biological species against electrode surface have been discussed.
The absorption of IPA and HPA film on electrode surfaces has been discussed on the basis of surface conditions of the CF microelectrode and the structure of IPA and HPA.
Fluid-fluid interfaces contacting with functional solid surfaces have been discussed.
The performances of various materials modified surfaces have been discussed with special emphasis on their cellular adhesion and electrochemical measurements.
Conditions for the plasma treatment process and properties of the modified PMMA surfaces have been discussed.
Future directions in terms of developing dynamic approaches to modify cell surfaces have been discussed in brief.
The mechanism of photocatalytic oxidation of iodide ion and also that of iodide ion-photooxidation on Al2O3 and SiO2 surfaces have been discussed elsewhere in detail [4 6, 8].
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