X Wang, Z Li, J Shi, Y Yu - Chemical reviews, 2014 - ACS Publications
Titanium dioxide (TiO 2) is a widely used multifunctional ceramic material due to its excellent stability and physical-chemical properties as well as its great accessibility and moderate …
Quantum dot (QD) solar cells, benefiting from unique quantum confinement effects and multiple exciton generation, have attracted great research attention in the past decades …
Colloidal quantum dots (CQDs) offer promise in flexible electronics, light sensing and energy conversion. These applications rely on rectifying junctions that require the creation of …
DOI: 10.1002/adma. 201503657 still relies on addressing the quality of the light-absorbing film itself.[27–31] In CQD solids, the large surface-to-volume ratio results in added …
Colloidal quantum dot (CQD) optoelectronics offers a compelling combination of low‐cost, large‐area solution processing, and spectral tunability through the quantum size effect …
Colloidal quantum dots (CQDs) are nanometer-sized particles of semiconductor dispersed in a solvent with the aid of a stabilizing ligand. CQDs' physical dimensions and shape dictate …
X Lan, S Masala, EH Sargent - Nature materials, 2014 - nature.com
The solar-power conversion efficiencies of colloidal quantum dot solar cells have advanced from sub-1% reported in 2005 to a record value of 8.5% in 2013. Much focus has deservedly …
Colloidal quantum dots are attractive materials for efficient, low-cost and facile implementation of solution-processed optoelectronic devices. Despite impressive mobilities …
J Liu, K Xian, L Ye, Z Zhou - Advanced Materials, 2021 - Wiley Online Library
Lead chalcogenide colloidal quantum dot solar cells (CQDSCs) have received considerable attention due to their broad and tunable absorption and high stability. Presently, lead …