Nanogap Electrodes
Wenping Hu
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Description for Nanogap Electrodes
Hardback. Unique in combining various synthesis strategies with applications for nanogap electrodes, this book introduces the topic before devoting whole sections to synthesis, characterization, and applications, finishing with interesting phenomena observed using molecular-based devices. Num Pages: 400 pages. BIC Classification: TBN; TJF. Category: (P) Professional & Vocational. Dimension: 244 x 170. .
Unique in its scope, this book comprehensively combines various synthesis strategies with applications for nanogap electrodes. Clearly divided into four parts, the monograph begins with an introduction to molecular electronics and electron transport in molecular junctions, before moving on to a whole section devoted to synthesis and characterization. The third part looks at applications with single molecules or self-assembled monolayers, and the whole is rounded off with a section on interesting phenomena observed using molecular-based devices.
Unique in its scope, this book comprehensively combines various synthesis strategies with applications for nanogap electrodes. Clearly divided into four parts, the monograph begins with an introduction to molecular electronics and electron transport in molecular junctions, before moving on to a whole section devoted to synthesis and characterization. The third part looks at applications with single molecules or self-assembled monolayers, and the whole is rounded off with a section on interesting phenomena observed using molecular-based devices.
Product Details
Format
Hardback
Publication date
2021
Publisher
Wiley-VCH Verlag GmbH Germany
Number of pages
400
Condition
New
Number of Pages
432
Place of Publication
Berlin, Germany
ISBN
9783527332717
SKU
V9783527332717
Shipping Time
Usually ships in 4 to 8 working days
Ref
99-1
About Wenping Hu
Tao Li is Associate Professor in the Department of Chemistry at Shanghai Jiao Tong University. His research interests are molecular electronics, molecular-scale devices, sythesis and application of organic functional materials and molecular solar thermal batteries.
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