Nanotechnology · 2016 · 28 citations · 22 references
EngineeringChemistrySilicon On InsulatorSemiconductor NanostructuresSemiconductorsP DoseNanoscale ScienceP DiffusionOxide HeterostructuresMaterials ScienceNanotechnologyDopant DistributionMonolayer DopingSemiconductor MaterialSemiconductor Device FabricationElectronic MaterialsSurface ScienceApplied PhysicsMultilayer Heterostructures
Achieving the required control of dopant distribution and selectivity for nanostructured semiconducting building block is a key issue for a large variety of applications. A promising strategy is monolayer doping (MLD), which consists in the creation of a well-ordered monolayer of dopant-containing molecules bonded to the surface of the substrate. In this work, we synthesize a P δ-layer embedded in a SiO2 matrix by MLD. Using a multi-technique approach based on time of flight secondary ion mass spectrometry (ToF-SIMS) and Rutherford backscattering spectrometry (RBS) analyses, we characterize the tuning of P dose as a function of the processing time and temperature. We found the proper conditions for a full grafting of the molecules, reaching a maximal dose of 8.3 × 10(14) atoms/cm(2). Moreover, using 1D rate equation model, we model P diffusion in SiO2 after annealing and we extract a P diffusivity in SiO2 of 1.5 × 10(17) cm(2) s(-1).
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P. S. Peercy · Nature · 2000 · 459 citations
Large-scale Global Optimization, Engineering, Data Optimization +3
Controlled nanoscale doping of semiconductors via molecular monolayers
Johnny C. Ho, Roie Yerushalmi, Zachery A. Jacobson et al. · Nature Materials · 2007 · 352 citations
High‐Quality Alkyl Monolayers on Silicon Surfaces
Alexander B. Sieval, R. Linke, Han Zuilhof et al. · Advanced Materials · 2000 · 272 citations
Materials Science, Engineering, Surface Functionalization +10