Elementary Processes in Organic Photovoltaics [electronic resource] / edited by Karl Leo.

Інтелектуальна відповідальність: Вид матеріалу: Текст Серія: Advances in Polymer Science ; 272Публікація: Cham : Springer International Publishing : Imprint: Springer, 2017Видання: 1st ed. 2017Опис: IX, 421 p. 244 illus., 184 illus. in color. online resourceТип вмісту:
  • text
Тип засобу:
  • computer
Тип носія:
  • online resource
ISBN:
  • 9783319283388
Тематика(и): Додаткові фізичні формати: Printed edition:: Немає назви; Printed edition:: Немає назви; Printed edition:: Немає назвиДесяткова класифікація Дьюї:
  • 541.2254 23
Класифікація Бібліотеки Конгресу:
  • QD380-388
Електронне місцезнаходження та доступ:
Вміст:
From the contents: Polymeric solar cells: Molecular orientation, structure, and optoelectronic performance -- An integrated approach towards highly efficient bulk-heterojunction solar cells based on dendritic oligothiophenes -- Organic solar cells based on oligothiophene derivatives -- Charge separation at nanostructured molecular donoracceptor interfaces -- p-B-n organic junctions for efficient photovoltaics -- Interplay between microscopic structure and intermolecular charge transfer processes in polymer-fullerene bulk-heterojunctions -- Organic solar cells from optimized self-assembling block copolymers with controlled nanoscale morphology.
У: Springer eBooksЗведення: This volume presents the results of a multi-year research programme funded by the Deutsche Forschungsgemeinschaft (German Research Council), which explains how organic solar cells work. In this new promising photovoltaic technology, carbon-based materials are deposited by low-cost methods onto flexible substrates, thus allowing devices which open completely new applications like transparent coatings for building, solar cells integrated into clothing or packages, and many more. The investigation of organic solar cells is an interdisciplinary topic, covering physics, chemistry and engineering. The different chapters address topics ranging from the synthesis of new organic materials, to the characterization of the elementary processes such as exciton transport and separation, and the principles of highly efficient device design.
Тип одиниці: ЕКнига Списки з цим бібзаписом: Springer Ebooks (till 2020 - Open Access)+(2017 Network Access)) | Springer Ebooks (2017 Network Access))
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From the contents: Polymeric solar cells: Molecular orientation, structure, and optoelectronic performance -- An integrated approach towards highly efficient bulk-heterojunction solar cells based on dendritic oligothiophenes -- Organic solar cells based on oligothiophene derivatives -- Charge separation at nanostructured molecular donoracceptor interfaces -- p-B-n organic junctions for efficient photovoltaics -- Interplay between microscopic structure and intermolecular charge transfer processes in polymer-fullerene bulk-heterojunctions -- Organic solar cells from optimized self-assembling block copolymers with controlled nanoscale morphology.

This volume presents the results of a multi-year research programme funded by the Deutsche Forschungsgemeinschaft (German Research Council), which explains how organic solar cells work. In this new promising photovoltaic technology, carbon-based materials are deposited by low-cost methods onto flexible substrates, thus allowing devices which open completely new applications like transparent coatings for building, solar cells integrated into clothing or packages, and many more. The investigation of organic solar cells is an interdisciplinary topic, covering physics, chemistry and engineering. The different chapters address topics ranging from the synthesis of new organic materials, to the characterization of the elementary processes such as exciton transport and separation, and the principles of highly efficient device design.

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