<--- Back to Details
First PageDocument Content
Energy conversion / Solar cells / Semiconductor devices / Solar cell / Zinc oxide / Multijunction photovoltaic cell / Indium nitride / Carbon nanotube / Konarka Technologies / Chemistry / Energy / Technology
Date: 2012-05-03 12:24:33
Energy conversion
Solar cells
Semiconductor devices
Solar cell
Zinc oxide
Multijunction photovoltaic cell
Indium nitride
Carbon nanotube
Konarka Technologies
Chemistry
Energy
Technology

Solution-processable Metal Oxide Materials in Multijunction Architecture Organic Photovoltaics for Optimized Tunnel Junction Layers and Improved Device Lifetime Sarah R. Cowan, Andres Garcia, Erin Ratcliff, and Dana C. O

Add to Reading List

Source URL: www1.eere.energy.gov

Download Document from Source Website

File Size: 1,52 MB

Share Document on Facebook

Similar Documents

NANO LETTERS Four-Point Probe Resistance Measurements Using PtIr-Coated Carbon Nanotube Tips

NANO LETTERS Four-Point Probe Resistance Measurements Using PtIr-Coated Carbon Nanotube Tips

DocID: 1v7kD - View Document

Inhaled carbon nanotube-induced gene expression Inhaled carbon nanotube-induced gene expression

Inhaled carbon nanotube-induced gene expression Inhaled carbon nanotube-induced gene expression

DocID: 1uJrb - View Document

NANO LETTERS Excited State Spectroscopy in Carbon Nanotube Double Quantum Dots

NANO LETTERS Excited State Spectroscopy in Carbon Nanotube Double Quantum Dots

DocID: 1tkUe - View Document

Nanotechnology–102. Printed in the UK  PII: S0957Molecular dynamics simulations of carbon nanotube-based gears

Nanotechnology–102. Printed in the UK PII: S0957Molecular dynamics simulations of carbon nanotube-based gears

DocID: 1tbBA - View Document

Applica tion N ot e  Poseidon Select™ Understanding the Mechanism of Carbon Nanotube Degradation in Macrophage Cells

Applica tion N ot e Poseidon Select™ Understanding the Mechanism of Carbon Nanotube Degradation in Macrophage Cells

DocID: 1sSFv - View Document