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Silica Surface Modification Reactions: Kinetics, Mechanisms, and Surface Structures. Jonathan Blitz Department of Chemistry. Applications of Surface Modified Silicas. Composites Adhesives/Sealants Paints/Coatings Chromatographic stationary phases Catalyst supports/Catalysts Adsorbents.
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Silica Surface Modification Reactions: Kinetics, Mechanisms, and Surface Structures Jonathan Blitz Department of Chemistry
Applications of Surface Modified Silicas • Composites • Adhesives/Sealants • Paints/Coatings • Chromatographic stationary phases • Catalyst supports/Catalysts • Adsorbents
The SiO2 Surface H H H H Surface O O O O Si Si Si Si O O O Interior
Specular and DiffuseReflection Sample ~10% (w/w) SiO2 dispersion in KCl
The Silica Surface H H H O An FTIR Perspective O O O Si Si Si Si Si
HMDS HMDS (CH3)3SiNHSi(CH3)3
TiCl4 Reactions Si(s)-OH + TiCl4 Si(s)-O-TiCl3 + HCl
Aluminum Alkyl Reactions Si(s)-OH + Al(Et)2Cl Si(s)-O-Al(Et)2 + HCl ? Si(s)-OH + Al(Et)2Cl Si(s)-O-Al(Et)Cl + C2H6 ? Si(s)-OH + Al(Et)3 Si(s)-O-Al(Et)2 + C2H6 Another Complication
Et Si(CH3)3 Al O O O Cl Si(CH3)3 Al O O O Cl Cl Cl Cl Al Al Si(CH3)3 O O O Possible Explanation of Analytical Data H H Si(CH3)3 Al(Et)3 O O O H H Si(CH3)3 Al(Et)2Cl O O O H H Si(CH3)3 AlEtCl2 O O O
ab initio computational chemistry + Adsorbed or pre-reaction complex
Transition state 1 Transition state 2 Adsorbed complex
+ Products 1 + Products 2 + +
Time is Money • Industrial scale synthesis is aided by reaction kinetics information • Empirical kinetics data can be obtained, fundamental information is much more difficult to come by • 1) Heterogeneous system (adsorption vs. reaction rates) • 2) Silica surface chemistry is complex (more than one type of reactive group)
HMDS Reaction with silica nanoparticles 1 h reacted 12 s reacted unreacted
45h reacted 4h reacted
Analysis of Kinetics Data • Knowing the reaction mechanism (determined by ab initio calculation)… • Knowing the initial starting conditions, including different silanol concentrations… Differential rate equations for all reactants, transient species, and products obtained. Numerical integration giving best fit to data provides rate constants for various reactions.
Main Conclusions … Slow Reaction Kinetics Fast Reaction Kinetics Slow Reaction Kinetics Fast Reaction Kinetics …obtained indirectly
…Empirical kinetics data can be obtained, fundamental information is much more difficult to come by 1) Heterogeneous system (adsorption vs. reaction rates) 2) Silica surface chemistry is complex (more than one type of reactive group) Model Compound Solution Studies • Diphenylsilanediol/HMDS reactions • Silsesquioxane/aminopropylsilane reactions
Reaction rate = 1.5 x 10-5 Ms-1 Direct measurements of relative silanediol reactivity supports conclusions from silica studies Reaction rate = 1.9 x 10-6 Ms-1 Internal standard
Silsesquioxane/Aminosilane Studies Using solution FTIR to monitor SiOH loss provides kinetics data on this reaction…
Silanol Loss from Aminopropylsilane Reaction in Hexane Solution
An increase in temperature results in an increased rate constant …
H-bond complex formation is rate limiting at higher temperatures Activation energy is rate limiting at lower temperatures
Summary • Surface structures can be controlled by silica pretreatments prior to chemical modification • Computational studies provide insight into mechanisms and driving forces • Kinetics data can be obtained on silica – but it is difficult and the information is indirect • Model solution studies provide confirmation and additional information otherwise unobtainable
Acknowledgments • Funding: • ACS Petroleum Research Fund • Cabot Corporation • Equistar Chemicals • Eastern Illinois University • Students & Collaborators: • Carol Deakyne • Reto Frei • Vlad Gun’ko • Giles Henderson • John Sipple • Mary Vedamuthu