1. Executive Summary Materials are an essential element of advanced energy technologies. Accelerating the discovery of new materials, and the associated research required for maturing these technologies into deployment, will require a multidisciplinary and international effort that brings together a wide variety of individuals working effectively across their specialties, as well as across sector and political boundaries. It will also require a radical departure from traditional forms of discovery., Aspuru-Guzik, Alán and Persson, Kristin, :C:/Users/etgrau/AppData/Local/Mendeley Ltd./Mendeley Desktop/Downloaded/Aspuru-Guzik, Alán - Unknown - Materials Acceleration Platform Accelerating Advanced Energy Materials Discovery by Integrating High-Thro.pdf:pdf, Report of the Clean Energy Materials Innovation Challenge Expert Workshop, 3D render,Central America,Earth,Mexico,Nature,USA,astronomy,cities,city lights,continent,globe,illustration,map,night,north america,orbit,orbiting,planet,realistic,region,satellite,satellite view,science,space,stars,sun,sunrise,weather, SuperPaper, January, 1–108, Materials Acceleration Platform - Accelerating Advanced Energy Materials Discovery by Integrating High-Throughput Methods with Artificial Intelligence, http://nrs.harvard.edu/urn-3:HUL.InstRepos:35164974, 2018
2. Optical methodology for process monitoring of chalcopyrite photovoltaic technologies: Application to low cost Cu(In,Ga)(S,Se)2 electrodeposition based processes
3. Resonant Raman scattering based approaches for the quantitative assessment of nanometric ZnMgO layers in high efficiency chalcogenide solar cells
4. Defect characterisation in Cu2ZnSnSe4 kesterites via resonance Raman spectroscopy and the impact on optoelectronic solar cell properties
5. Thin‐film solar cells exceeding 22% solar cell efficiency: An overview on CdTe-, Cu(In,Ga)Se2-, and perovskite-based materials