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- W2902705022 abstract "The main goal of this thesis is to investigate and develop the physics of dye-based photovoltaicphysics through molecular and photonic routes. Numerous photovoltaics devices have been fabricatedthrough the course of this work to study their characteristics, performance, physicalcomposition and action. The relative youth of the field of dye-based optoelectronics providesextensive scope for new research which provides fascinating opportunities in terms of physicalprocesses.This thesis is divided into two main projects; exploring the adaption of conventionaldye-sensitized solar cells via starkly different routes which serendipitously culminated in strikingsimilarities at their conclusion. The first route is through incorporating spectrally complementarydye molecules with the intention of extending the range of light absorption of the finaldevices. This initial aim was achieved and was then furthered by the realisation of an unexpectedand unprecedented energy transfer process occurring, imparting enhanced photocurrentgeneration in both the near-IR and visibile region. The second route involves investigating theeffect on dye-sensitized solar cell physics and performance of the inclusion of metallic nanoparticleswith the expectation of inducing plasmonic interactions. Novel systems were designedand implemented, devices were made which display significant performance enhancement, attributedto plasmonic coupling into the dyes and thereby increasing photocapture. A numberof other investigations are documented whose current completion does not sufficiently warrantindependent chapters but whose scientific interest is evident." @default.
- W2902705022 created "2018-12-11" @default.
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- W2902705022 date "2012-01-01" @default.
- W2902705022 modified "2023-09-26" @default.
- W2902705022 title "Light harvesting and photoconversion efficiency enhancement in dye-sensitized solar cells via molecular and photonic advancements" @default.
- W2902705022 hasPublicationYear "2012" @default.
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