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Engineering (with) Nanoparticles
Published on Jun 03, 202013 Views
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Chapter list
Engineering (with) Nanoparticles00:00
Nanotechnology in photovoltaics00:29
Beyond the single junction limit - Using Low Energy Photons01:16
Intermediate Band Materials - 101:56
Intermediate Band Materials - 202:21
Multiphase Nanostructured Films - Our Approach to Fabrication - 103:04
Contents03:11
Multiphase Nanostructured Films - Our Approach to Fabrication - 203:16
Quantum Dot Engineering03:32
Tuning the Optical Properties: Size and Composition03:40
Synthesis of Quanutm Dots at Maximum Yield03:58
Maximum Yield Synthesis in a Closed System04:49
Tuning the Optical Properties: Shell05:32
Modeling the Optical Properties of Nanoheterostructures05:57
Tuning the Optical Properties: Interdiffusion06:11
Optimizing the Quantum Yield - 107:10
Optimizing the Quantum Yield - 207:44
Precise Engineering of Semiconductor Core-Shell Structures08:04
Precise Engineering of Hybrid Core-Shell Structures08:59
Hybrid Core-Shell Structures09:09
Nano-hybrid particles as SERS-based optical biomarkers09:42
Raman vs Photoluminescence10:09
QD as Phosphors in Solid Materials10:37
Core-Shell Nanorods10:49
Semiconductor Nanoplatelets10:54
Multiphase Nanostructured Films - Our Approach to Fabrication 10:57
Engineering Surface Chemistry11:11
CdSe@C6: Synthesis via Capping Exchange11:37
P3HT:CdSe@C61 blend11:49
Supramolecular Assembly11:54
Supramolecular Assembly Applied to Quantum Dots - 112:03
Supramolecular Assembly Applied to Quantum Dots - 212:19
Control of QD-assembly morphologies - 112:22
Control of QD-assembly morphologies - 212:22
Multiphase Nanostructured Films - Our Approach to Fabrication -12:30
From a Colloidal Solid to a Dense Nanostructured Film - 112:45
From a Colloidal Solid to a Dense Nanostructured Film - 212:47
Engineering Surface Chemistry13:00
Output of the model: Eg vs. Diffusion Length - 113:04
Output of the model: Eg vs. Diffusion Length - 213:09
Intermediate Band Materials: Evidence of Upconversion13:12