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Over 15 relative literatures are listed and briefly discussed with different enzymes, modified supports, and coupling methods.
La2O3 modified supports and catalysts are characterized using BET specific surface area, XRD, TPR, TPO, and H2-pulse chemisorption.
Palladium catalysts have been prepared using these modified supports and subsequently tested in the partial hydrogenation of 1,3-butadiene under conditions of excess hydrogen.
Palladium catalysts using these modified supports and PdCl2 as precursor were prepared, and subsequently tested in the partial hydrogenation of 1,3-butadiene under conditions of excess hydrogen.
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This approach is very efficient because (1) we compute ({mathcal L}{mathcal C}{mathcal G}) once (using well-known algorithms such as CHARM_L and MinimalGegenators), and (2) it is suitable for use with frequently modified support and confidence thresholds.
The surface of sulfonic acid functionalized silica has been modified by silylation, using two silylating agents: (CH3 3SiCl and CF3(CF2)5(CH2)2Si(CH3)2Cl. The modified supports were characterized by different techniques.
Systems with chemically modified supports are shown to be more efficient and stable catalysts however; chemical nature of functional groups plays a crucial role.
Generally, Au NPs are pre-synthesized and then incorporated into the modified supports.
A blank alumina catalyst support was modified by deposition of TiO2, ZrO2 or carbon, and cobalt molybdate catalysts prepared from the modified supports were evaluated in a laboratory coal liquefaction microreactor unit.
Nicely the catalysts with modified supports minimize the secondary hydrogenation of butenes even at high conversions.
The results that the modified supports can in practical catalyst preparation as well as in RPA simulations be treated as pure oxide supports.
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