Organic Thermoelectric Materials

Afbeeldingen

Artikel vergelijken

  • Engels
  • Hardcover
  • 9781788014700
  • 31 oktober 2019
  • 328 pagina's
Alle productspecificaties

Royal society of chemistry

"The Royal Society of Chemistry (RSC) is a learned society (professional association) in the United Kingdom with the goal of ""advancing the chemical sciences"". It was formed in 1980 from the amalgamation of the Chemical Society, the Royal Institute of Chemistry, the Faraday Society, and the Society for Analytical Chemistry with a new Royal Charter and the dual role of learned society and professional body. At its inception, the Society had a combined membership of 34,000 in the UK and a further 8,000 abroad. The headquarters of the Society are at Burlington House, Piccadilly, London. It also has offices in Thomas Graham House in Cambridge (named after Thomas Graham, the first president of the Chemical Society) where RSC Publishing is based. The Society has offices in the United States at the University City Science Center, Philadelphia, in both Beijing and Shanghai, China and Bangalore, India. The organisation carries out research, publishes journals, books and databases, as well as hosting conferences, seminars and workshops. It is the professional body for chemistry in the UK, with the ability to award the status of Chartered Chemist (CChem) and, through the Science Council the awards of Chartered Scientist (CSci), Registered Scientist (RSci) and Registered Science Technician (RScTech) to suitably qualified candidates. The designation FRSC is given to a group of elected Fellows of the society who have made major contributions to chemistry and other interface disciplines such as biological chemistry. The names of Fellows are published each year in The Times (London). Honorary Fellowship of the Society (""HonFRSC"") is awarded for distinguished service in the field of chemistry.

(Bron: Wikipedia. Beschikbaar onder de licentie Creative Commons Naamsvermelding/Gelijk delen.)"

Samenvatting

This book summarises the significant progress made in organic thermoelectric materials, focusing on effective routes to minimize thermal conductivity and maximize power factor.



Thermoelectric materials have received a great deal of attention in energy-harvesting and cooling applications, primarily due to their intrinsic low cost, energy efficient and eco-friendly nature. The past decade has witnessed heretofore-unseen advances in organic-based thermoelectric materials and devices.

This title summarises the significant progress that has been made in the molecular design, physical characterization, and performance optimization of organic thermoelectric materials, focusing on effective routes to minimize thermal conductivity and maximize power factor. Featuring a series of state-of-the-art strategies for enhancing the thermoelectric figure of merit (ZT) of organic thermoelectricity, and highlighting cutting-edge concepts to promote the performance of organic thermoelectricity, chapters will strengthen the exploration of new high-ZT thermoelectric materials and their potential applications.

With contributions from leading worldwide authors, Organic Thermoelectric Materials will appeal to graduate students as well as academic and industrial researchers across chemistry, materials science, physics and engineering interested in the materials and their applications.



Thermoelectric materials have received a great deal of attention in energy-harvesting and cooling applications, primarily due to their intrinsic low cost, energy efficient and eco-friendly nature. The past decade has witnessed heretofore-unseen advances in organic-based thermoelectric materials and devices. This title summarises the significant progress that has been made in the molecular design, physical characterization, and performance optimization of organic thermoelectric materials, focusing on effective routes to minimize thermal conductivity and maximize power factor. Featuring a series of state-of-the-art strategies for enhancing the thermoelectric figure of merit (ZT) of organic thermoelectricity, and highlighting cutting-edge concepts to promote the performance of organic thermoelectricity, chapters will strengthen the exploration of new high-ZT thermoelectric materials and their potential applications. With contributions from leading worldwide authors, Organic Thermoelectric Materials will appeal to graduate students as well as academic and industrial researchers across chemistry, materials science, physics and engineering interested in the materials and their applications.

Productspecificaties

Inhoud

Taal
en
Bindwijze
Hardcover
Oorspronkelijke releasedatum
31 oktober 2019
Aantal pagina's
328
Illustraties
Nee

Betrokkenen

Hoofdredacteur
Zhiqun Lin
Tweede Redacteur
Ming He
Hoofduitgeverij
Royal society of chemistry

Overige kenmerken

Extra groot lettertype
Nee
Product breedte
156 mm
Product lengte
234 mm
Studieboek
Ja
Verpakking breedte
156 mm
Verpakking hoogte
234 mm
Verpakking lengte
234 mm
Verpakkingsgewicht
667 g

EAN

EAN
9781788014700
Nog geen reviews

Kies gewenste uitvoering

Bindwijze : Hardcover

Prijsinformatie en bestellen

De prijs van dit product is 194 euro en 99 cent.
Op voorraad
Select
Voor 23:59 besteld, morgen in huis
Verkoop door bol
  • Prijs inclusief verzendkosten, verstuurd door bol
  • Ophalen bij een bol afhaalpunt mogelijk
  • 30 dagen bedenktijd en gratis retourneren
  • Dag en nacht klantenservice
Bezorgopties
  • Vandaag nog in huis (bestel ma-vr voor 12:00, bezorging tussen 17:00 en 22:00)
  • Doordeweeks ook ’s avonds in huis
  • Ook zondag in huis (bestel voor za 23:59)