Investigation of interfacial reaction kinetics of I−(aq) with Ag2O(s) on Ag substrate: Determining mass transport and surface reaction rates

2011 ◽  
Vol 56 (6) ◽  
pp. 2754-2761 ◽  
Author(s):  
S.D. Pretty ◽  
P.G. Keech ◽  
X. Zhang ◽  
J.J. Noël ◽  
J.C. Wren
2001 ◽  
Vol 178 (1-4) ◽  
pp. 63-74
Author(s):  
N. Dietz ◽  
S.C. Beeler ◽  
J.W. Schmidt ◽  
H.T. Tran

2019 ◽  
Vol 2 (7) ◽  
pp. 145-156
Author(s):  
Haizheng Song ◽  
M. Sugiyama ◽  
Yoshiaki Nakano ◽  
Yukihiro Shimogaki

1994 ◽  
Vol 100 (11) ◽  
pp. 8471-8482 ◽  
Author(s):  
V. Schmatloch ◽  
I. Jirka ◽  
N. Kruse

Catalysts ◽  
2015 ◽  
Vol 5 (2) ◽  
pp. 871-904 ◽  
Author(s):  
Karla Delgado ◽  
Lubow Maier ◽  
Steffen Tischer ◽  
Alexander Zellner ◽  
Henning Stotz ◽  
...  

1990 ◽  
Vol 180 ◽  
Author(s):  
Roger A. Assink ◽  
Bruce D. Kay

ABSTRACTThis paper surveys a few of the current issues in sol-gel reaction kinetics. Many times seemingly modest changes in reactants or reaction conditions can lead to substantial differences in the overall reaction rates and pathways. For example, qualitative features of the reaction kinetics can depend on catalyst concentration. At very high acid-catalyst concentrations, reverse reactions are significant for TMOS solgels, while for moderate acid-catalyst concentrations, reverse reactions are substantially reduced. The reaction kinetics of two similar tetraalkoxysilanes: tetramethoxysilane (TMOS) and tetraethoxysilane (TEOS), can be markedly different under identical reaction conditions. Under acid-catalyzed reaction conditions, a TMOS sol-gel undergoes both water- and alcoholproducing condensation reactions while a TEOS sol-gel undergoes only water-producing condensation. The early time hydrolysis and condensation reactions of a TMOS sol-gel are statistical in nature and can be quantitatively described by a few simple reaction rate constants while the reaction behavior of a TEOS sol-gel is markedly nonstatistical. A comprehensive theory of sol-gel kinetics must address these diverse experimental findings.


Author(s):  
Bruno Lacerda de Oliveira Campos ◽  
Karla Herrera Delgado ◽  
Stefan Wild ◽  
Felix Studt ◽  
Stephan Pitter ◽  
...  

Correction for ‘Surface reaction kinetics of the methanol synthesis and the water gas shift reaction on Cu/ZnO/Al2O3’ by Bruno Lacerda de Oliveira Campos et al., React. Chem. Eng., 2021, 6, 868–887; DOI: 10.1039/D1RE00040C


2018 ◽  
Vol 282 ◽  
pp. 182-189
Author(s):  
Guy Vereecke ◽  
Haroen Debruyn ◽  
Quinten de Keyser ◽  
Rita Vos ◽  
Abhishek Dutta ◽  
...  

In semiconductor manufacturing of 3-D nano-structures, modified kinetics have been encountered for the aqueous chemical etching of thin films in nano-confined spaces. A popular explanation relies on changes in reactant concentration from the overlap of electrostatic double layers (EDL) on opposite walls of the nano-structures. In this study, the cycloaddition of dibenzylcyclooctyne-PEG3-alcohol (DBCO) to a linear azide-terminated SAM was performed in nanochannels of width varying from 62 to 32 nm. ATR-FTIR was used to monitor the reaction kinetics, characterize water structuring and determine the pH in nanochannels. Reaction kinetics were slower in nanochannels as compared to a planar surface, while pH shifts were observed in absence of EDL overlap, with a significant influence of channel width. Actually only the overall decrease in reaction rate could be explained by EDL overlap. The discussion shows that the water structuring measured in nanochannels may play a significant role in the observed phenomena.


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