https://nova.newcastle.edu.au/vital/access/ /manager/Index en-au 5 Thienylvinylenethienyl and naphthalene core substituted with triphenylamines-highly efficient hole transporting materials and their comparative study for inverted perovskite solar cells https://nova.newcastle.edu.au/vital/access/ /manager/Repository/uon:33910 oc of 1.07 V. The obtained performance is one of the highest performances in inverted perovskite layouts. The cut‐price and straightforward synthesis with elegant scale up makes these classes of materials important for the industry to produce high‐throughput printed perovskite solar cells for large area applications.]]> Wed 23 Jan 2019 10:40:21 AEDT ]]> An ink-composition engineering approach for upscaling of organic solar cells with high-efficiency retention factor https://nova.newcastle.edu.au/vital/access/ /manager/Repository/uon:38502 71BM ternary blend show efficiencies up to 10.2% (device active area 0.88 cm2), which is the highest value reported to date (for in-air slot-die-coated devices). This is achieved through ink modifications and optimizations as well as electrode and active layer compositional optimizations, leading to an impressive efficiency retention of 0.86 compared to the in-literature optimized small-scale devices.]]> Wed 19 Apr 2023 11:52:55 AEST ]]>