2023
DOI: 10.1021/acsami.3c03782
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Periodic Arrays of Dopants in Silicon by Ultralow Energy Implantation of Phosphorus Ions through a Block Copolymer Thin Film

Abstract: In this work, block copolymer lithography and ultralow energy ion implantation are combined to obtain nanovolumes with high concentrations of phosphorus atoms periodically disposed over a macroscopic area in a p-type silicon substrate. The high dose of implanted dopants grants a local amorphization of the silicon substrate. In this condition, phosphorus is activated by solid phase epitaxial regrowth (SPER) of the implanted region with a relatively low temperature thermal treatment preventing diffusion of phosp… Show more

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Cited by 4 publications
(2 citation statements)
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“…During the past decade, different research groups have rapidly expanded the scope of nanoporous polymers arising from block copolymers to design advanced materials for various high added value applications, including supports for heterogeneous catalysis, ,, responsive (biocatalytic) (ultra)­filtration membranes, , nanopatterns, ,, semiconductors and electrode materials, and materials for electrical energy storage …”
Section: Applications Of Nanoporous Materials Derived From Di- and Tr...mentioning
confidence: 99%
“…During the past decade, different research groups have rapidly expanded the scope of nanoporous polymers arising from block copolymers to design advanced materials for various high added value applications, including supports for heterogeneous catalysis, ,, responsive (biocatalytic) (ultra)­filtration membranes, , nanopatterns, ,, semiconductors and electrode materials, and materials for electrical energy storage …”
Section: Applications Of Nanoporous Materials Derived From Di- and Tr...mentioning
confidence: 99%
“…High-aspect ratio vertical nanopore arrays synthesized through the spontaneous self-assembly of block copolymer (BCP) thin films have attracted intense interest for applications in nanolithography, membrane separations, Li battery anode protection, and templating nanomaterial synthesis . A majority of BCP nanopatterning applications have utilized polystyrene- block -poly­(methyl methacrylate) (PS- b -PMMA) based on the near-equal surface energies of the two blocks at elevated temperatures (>200 °C) at the air–polymer interface.…”
Section: Introductionmentioning
confidence: 99%