This work focuses on the synthesis and interfacial characterization of gold nanostructureson silicon surfaces, including Si(111), Si(100), and Si nanowires. The synthetic approach uses galvanic displacement, a type of electroless deposition that takes place in an efficient manner under aqueous, room-temperature conditions. The case of gold-on-silicon has been widely studied and used for several applications and yet, a number of important, fundamental questions ras to the nature of the interface. Some studies are suggestive of heteroepitaxial growth of gold on the silicon surface, whereas others point to the existence of a silicon-gold intermetallic sandwiched between the metallic gold and the underlying silicon substrate. Through detailed h...
In spite of the fact that, a great deal of experimental research has been published, there is a lack...
In this work, slanted, kinked, and straight silicon nanowires (SiNWs) are fabricated on Si(111) and ...
Self-assembled nanowires offer the prospect of accurate and scalable device engineering at an atomis...
Thin Au films (~45 nm) deposited by thermal evaporation under high vacuum on bromine-passivated Si(1...
Nanodisk-shaped, single-crystal gold suicide heterojunctions were inserted into silicon nanowires du...
Gold deposition on Si(111) substrates has been carried out by electroless process from KAuCl4 in a f...
Silicon nanowires (Si-NWs) have been extensively studied for their numerous applications in nano-ele...
Thin gold films are grown on Si and Ge substrates by galvanic displacement from fluoride-containing ...
Silicon nanowires (SiNWs) were first synthesised using Au coated p type Si (100) substrate via the s...
Nanopatterns of gold clusters on a large surface of oriented Si(111) substrates, from the galvanic d...
There are several microelectronic processes which are based on gold due to its unique physical and ...
The process of gold nanoparticle (AuNP) precipitation on the silicon (Si) surface by galvanic replac...
International audienceSilicon nanowires were grown by gold-catalyzed chemical vapor deposition in th...
[[abstract]]The growth mechanism of oriented Au nanowires fabricated by immersion plating was invest...
Silicon nanowires with axially varying n- and p-doping were grown by the vapor-liquid-solid approach...
In spite of the fact that, a great deal of experimental research has been published, there is a lack...
In this work, slanted, kinked, and straight silicon nanowires (SiNWs) are fabricated on Si(111) and ...
Self-assembled nanowires offer the prospect of accurate and scalable device engineering at an atomis...
Thin Au films (~45 nm) deposited by thermal evaporation under high vacuum on bromine-passivated Si(1...
Nanodisk-shaped, single-crystal gold suicide heterojunctions were inserted into silicon nanowires du...
Gold deposition on Si(111) substrates has been carried out by electroless process from KAuCl4 in a f...
Silicon nanowires (Si-NWs) have been extensively studied for their numerous applications in nano-ele...
Thin gold films are grown on Si and Ge substrates by galvanic displacement from fluoride-containing ...
Silicon nanowires (SiNWs) were first synthesised using Au coated p type Si (100) substrate via the s...
Nanopatterns of gold clusters on a large surface of oriented Si(111) substrates, from the galvanic d...
There are several microelectronic processes which are based on gold due to its unique physical and ...
The process of gold nanoparticle (AuNP) precipitation on the silicon (Si) surface by galvanic replac...
International audienceSilicon nanowires were grown by gold-catalyzed chemical vapor deposition in th...
[[abstract]]The growth mechanism of oriented Au nanowires fabricated by immersion plating was invest...
Silicon nanowires with axially varying n- and p-doping were grown by the vapor-liquid-solid approach...
In spite of the fact that, a great deal of experimental research has been published, there is a lack...
In this work, slanted, kinked, and straight silicon nanowires (SiNWs) are fabricated on Si(111) and ...
Self-assembled nanowires offer the prospect of accurate and scalable device engineering at an atomis...