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Millifluidics for Chemical Synthesis and Time-resolved Mechanistic Studies
Published on: November 27, 2013
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Gold nanochannels oxidation by confined water
André M Batista1, Thiago B de Queiroz1, Renato A Antunes1
1Universidade Federal do ABC Av. dos Estados 5001 Santo André-SP 09210-580 Brazil herculano.martinho@ufabc.edu.br +55 (11) 4996 0196.
RSC Advances
|May 6, 2022
Summary
Confined water on gold surfaces exhibits unexpected hydrophilic behavior, challenging previous assumptions. This discovery reveals unique oxidation processes and has implications for nanoscopic applications in catalysis and green chemistry.
Area of Science:
- Surface Science
- Nanotechnology
- Physical Chemistry
Background:
- Confined water plays a crucial role in various processes, but its behavior, especially chemical reactivity, remains poorly understood.
- Simulations suggested hydrophilic behavior of the first water layer on gold surfaces, contrasting with bulk water's hydrophobicity.
Purpose of the Study:
- Investigate the properties of confined water specifically on gold (Au) 〈111〉 nanochannels.
- Examine the hydrophilicity of the first water layer and explore any unique reactions occurring within these nanochannels.
Main Methods:
- Utilized a comprehensive approach combining morphological, structural, and spectroscopic experimental data.
- Employed *ab initio* computer simulations to analyze water behavior and surface interactions.
Main Results:
- Experimental and computational findings strongly support the hydrophilicity of the first water layer on Au 〈111〉.
- Observed a unique oxidation process within the nanochannels, leading to the formation of gold(III) hydroxide (Au(OH)3).
Conclusions:
- The hydrophilicity of the first water layer on Au 〈111〉 surfaces is confirmed.
- The reactivity of gold surfaces with confined water, including oxidation, must be considered for nanoscopic applications.
- Findings are relevant for catalysis in fine chemicals, pharmaceuticals, and green processes in the food industry.

