Skabara Peter (18 results)

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  • Language: English

    Published by Royal Society of Chemistry, 2017

    1782624589 / 9781782624585

    • Hardcover

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    Condition: Brand New. New. US edition. Expediting shipping for all USA and Europe orders excluding PO Box. Excellent Customer Service.

  • Language: English

    Published by Royal Society of Chemistry, 2017

    1782624589 / 9781782624585

    • Hardcover

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    Condition: New. 1st edition NO-PA16APR2015-KAP.

  • Language: English

    Published by Royal Society of Chemistry, 2017

    1782624589 / 9781782624585

    • Hardcover

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  • Language: English

    Published by Royal Society of Chemistry, 2017

    1782624589 / 9781782624585

    • Hardcover

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  • Language: English

    Published by Royal Society of Chemistry, GB, 2017

    1782624589 / 9781782624585

    • Hardcover

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    Hardback. Condition: New. Materials for type III solar cells have branched into a series of generic groups. These include organic 'small molecule' and polymer conjugated structures, fullerenes, quantum dots, copper indium gallium selenide nanocrystal films, dyes/TiO2 for Grätzel cells, hybrid organic/inorganic composites and perovskites. Whilst the power conversion efficiencies of organic solar cells are modest compared to other type III photovoltaic materials, plastic semiconductors provide a cheap route to manufacture through solution processing and offer flexible devices. However, other types of materials are proving to be compatible with this type of processing whilst providing higher device efficiencies. As a result, the field is experiencing healthy competition between technologies that is pushing progress at a fast rate. In particular, perovskite solar cells have emerged very recently as a highly disruptive technology with power conversion efficiencies now over 20%. Perovskite cells, however, still have to address stability and environmental issues. With such a diverse range of materials, it is timely to capture the different technologies into a single volume of work. This book will give a collective insight into the different roles that nanostructured materials play in type III solar cells. This will be an essential text for those working with any of the devices highlighted above, providing a fundamental understanding and appreciation of the potential and challenges associated with each of these technologies.

  • Language: English

    Published by RSC Publishing, 2017

    1782624589 / 9781782624585

    • Hardcover

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  • Language: English

    Published by Royal Society of Chemistry, 2017

    1782624589 / 9781782624585

    • Hardcover

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  • Language: English

    Published by Rsc, 2017

    • Hardcover

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    Hardcover. Condition: New. ISBN:9781782624585.

  • Language: English

    Published by Royal Society of Chemistry, 2017

    1782624589 / 9781782624585

    • Hardcover

    Seller: Ria Christie Collections, Uxbridge, United KingdomRia Christie Collections

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  • Language: English

    Published by Royal Society of Chemistry, GB, 2017

    1782624589 / 9781782624585

    • Hardcover

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    Hardback. Condition: New. Materials for type III solar cells have branched into a series of generic groups. These include organic 'small molecule' and polymer conjugated structures, fullerenes, quantum dots, copper indium gallium selenide nanocrystal films, dyes/TiO2 for Grätzel cells, hybrid organic/inorganic composites and perovskites. Whilst the power conversion efficiencies of organic solar cells are modest compared to other type III photovoltaic materials, plastic semiconductors provide a cheap route to manufacture through solution processing and offer flexible devices. However, other types of materials are proving to be compatible with this type of processing whilst providing higher device efficiencies. As a result, the field is experiencing healthy competition between technologies that is pushing progress at a fast rate. In particular, perovskite solar cells have emerged very recently as a highly disruptive technology with power conversion efficiencies now over 20%. Perovskite cells, however, still have to address stability and environmental issues. With such a diverse range of materials, it is timely to capture the different technologies into a single volume of work. This book will give a collective insight into the different roles that nanostructured materials play in type III solar cells. This will be an essential text for those working with any of the devices highlighted above, providing a fundamental understanding and appreciation of the potential and challenges associated with each of these technologies.

  • Language: English

    Published by Royal Society of Chemistry, 2017

    1782624589 / 9781782624585

    • Hardcover

    Seller: Mispah books, Redhill, SURRE, United KingdomMispah books

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    Hardcover. Condition: New. NEW. SHIPS FROM MULTIPLE LOCATIONS. book.

  • Language: English

    Published by Royal Society of Chemistry, GB, 2017

    1782624589 / 9781782624585

    • Hardcover

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    Hardback. Condition: New. Materials for type III solar cells have branched into a series of generic groups. These include organic 'small molecule' and polymer conjugated structures, fullerenes, quantum dots, copper indium gallium selenide nanocrystal films, dyes/TiO2 for Grätzel cells, hybrid organic/inorganic composites and perovskites. Whilst the power conversion efficiencies of organic solar cells are modest compared to other type III photovoltaic materials, plastic semiconductors provide a cheap route to manufacture through solution processing and offer flexible devices. However, other types of materials are proving to be compatible with this type of processing whilst providing higher device efficiencies. As a result, the field is experiencing healthy competition between technologies that is pushing progress at a fast rate. In particular, perovskite solar cells have emerged very recently as a highly disruptive technology with power conversion efficiencies now over 20%. Perovskite cells, however, still have to address stability and environmental issues. With such a diverse range of materials, it is timely to capture the different technologies into a single volume of work. This book will give a collective insight into the different roles that nanostructured materials play in type III solar cells. This will be an essential text for those working with any of the devices highlighted above, providing a fundamental understanding and appreciation of the potential and challenges associated with each of these technologies.

  • Language: English

    Published by Royal Society of Chemistry, Cambridge, 2017

    1782624589 / 9781782624585

    • Hardcover

    Seller: Grand Eagle Retail, Bensenville, IL, U.S.A.Grand Eagle Retail

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    Hardcover. Condition: new. Hardcover. Materials for type III solar cells have branched into a series of generic groups. These include organic small molecule and polymer conjugated structures, fullerenes, quantum dots, copper indium gallium selenide nanocrystal films, dyes/TiO2 for Graetzel cells, hybrid organic/inorganic composites and perovskites. Whilst the power conversion efficiencies of organic solar cells are modest compared to other type III photovoltaic materials, plastic semiconductors provide a cheap route to manufacture through solution processing and offer flexible devices. However, other types of materials are proving to be compatible with this type of processing whilst providing higher device efficiencies. As a result, the field is experiencing healthy competition between technologies that is pushing progress at a fast rate. In particular, perovskite solar cells have emerged very recently as a highly disruptive technology with power conversion efficiencies now over 20%. Perovskite cells, however, still have to address stability and environmental issues. With such a diverse range of materials, it is timely to capture the different technologies into a single volume of work. This book will give a collective insight into the different roles that nanostructured materials play in type III solar cells. This will be an essential text for those working with any of the devices highlighted above, providing a fundamental understanding and appreciation of the potential and challenges associated with each of these technologies. This book will give a collective insight into the different roles that nanostructured materials play in Type III solar cells. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.

  • Language: English

    Published by ROYAL SOCIETY OF CHEMISTRY, 2017

    1782624589 / 9781782624585

    • Hardcover

    Seller: moluna, Greven, Germanymoluna

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    Condition: New. This book will give a collective insight into the different roles that nanostructured materials play in Type III solar cells.InhaltsverzeichnisrnrnReliably measuring the performance of emerging photovoltaic solar cells Bulk Heterojunction O.

  • Language: English

    Published by SP RSC PUBLISHING, 2018

    1782624589 / 9781782624585

    • Hardcover
    • International Edition

    Seller: UK BOOKS STORE, London, LONDO, United KingdomUK BOOKS STORE

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    Condition: New. Brand New! Fast Delivery This is an International Edition and ship within 24-48 hours. Deliver by FedEx and Dhl, & Aramex, UPS, & USPS and we do accept APO and PO BOX Addresses. Order can be delivered worldwide within 6-10 days and we do have flat rate for up to 2LB. Extra shipping charges will be requested if the Book weight is more than 5 LB. This Item May be shipped from India, United states & United Kingdom. Depending on your location and availability.

  • Language: English

    Published by Royal Society of Chemistry, GB, 2017

    1782624589 / 9781782624585

    • Hardcover

    Seller: Rarewaves.com UK, London, United KingdomRarewaves.com UK

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    Hardback. Condition: New. Materials for type III solar cells have branched into a series of generic groups. These include organic 'small molecule' and polymer conjugated structures, fullerenes, quantum dots, copper indium gallium selenide nanocrystal films, dyes/TiO2 for Grätzel cells, hybrid organic/inorganic composites and perovskites. Whilst the power conversion efficiencies of organic solar cells are modest compared to other type III photovoltaic materials, plastic semiconductors provide a cheap route to manufacture through solution processing and offer flexible devices. However, other types of materials are proving to be compatible with this type of processing whilst providing higher device efficiencies. As a result, the field is experiencing healthy competition between technologies that is pushing progress at a fast rate. In particular, perovskite solar cells have emerged very recently as a highly disruptive technology with power conversion efficiencies now over 20%. Perovskite cells, however, still have to address stability and environmental issues. With such a diverse range of materials, it is timely to capture the different technologies into a single volume of work. This book will give a collective insight into the different roles that nanostructured materials play in type III solar cells. This will be an essential text for those working with any of the devices highlighted above, providing a fundamental understanding and appreciation of the potential and challenges associated with each of these technologies.

  • Language: English

    Published by Royal Society of Chemistry, Cambridge, 2017

    1782624589 / 9781782624585

    • Hardcover

    Seller: AussieBookSeller, Truganina, VIC, AustraliaAussieBookSeller

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    Hardcover. Condition: new. Hardcover. Materials for type III solar cells have branched into a series of generic groups. These include organic small molecule and polymer conjugated structures, fullerenes, quantum dots, copper indium gallium selenide nanocrystal films, dyes/TiO2 for Graetzel cells, hybrid organic/inorganic composites and perovskites. Whilst the power conversion efficiencies of organic solar cells are modest compared to other type III photovoltaic materials, plastic semiconductors provide a cheap route to manufacture through solution processing and offer flexible devices. However, other types of materials are proving to be compatible with this type of processing whilst providing higher device efficiencies. As a result, the field is experiencing healthy competition between technologies that is pushing progress at a fast rate. In particular, perovskite solar cells have emerged very recently as a highly disruptive technology with power conversion efficiencies now over 20%. Perovskite cells, however, still have to address stability and environmental issues. With such a diverse range of materials, it is timely to capture the different technologies into a single volume of work. This book will give a collective insight into the different roles that nanostructured materials play in type III solar cells. This will be an essential text for those working with any of the devices highlighted above, providing a fundamental understanding and appreciation of the potential and challenges associated with each of these technologies. This book will give a collective insight into the different roles that nanostructured materials play in Type III solar cells. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.

  • Language: English

    Published by Rsc, 2017

    Seller: Books in my Basket, New Delhi, IndiaBooks in my Basket

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    N.A. Condition: New. ISBN:9781782624585.