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Controlled doping by self-assembled dendrimer-like macromolecules.

Scientific reports (2017-02-02)
Haigang Wu, Bin Guan, Yingri Sun, Yiping Zhu, Yaping Dan
ABSTRACT

Doping via self-assembled macromolecules might offer a solution for developing single atom electronics by precisely placing individual dopants at arbitrary location to meet the requirement for circuit design. Here we synthesize dendrimer-like polyglycerol macromolecules with each carrying one phosphorus atom in the core. The macromolecules are immobilized by the coupling reagent onto silicon surfaces that are pre-modified with a monolayer of undecylenic acid. Nuclear magnetic resonance (NMR) and X-ray photoelectron spectroscopy (XPS) are employed to characterize the synthesized macromolecules and the modified silicon surfaces, respectively. After rapid thermal annealing, the phosphorus atoms carried by the macromolecules diffuse into the silicon substrate, forming dopants at a concentration of 10

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Sigma-Aldrich
Tris(4-methoxyphenyl)phosphine, 95%