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Structural DNA Nanotechnology
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  • Cited by 5
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    This book has been cited by the following publications. This list is generated based on data provided by CrossRef.

    Agarwal, Nayan P. Matthies, Michael Joffroy, Bastian and Schmidt, Thorsten L. 2018. Structural Transformation of Wireframe DNA Origami via DNA Polymerase Assisted Gap-Filling. ACS Nano, Vol. 12, Issue. 3, p. 2546.

    Cunningham, Paul D. Kim, Young C. Díaz, Sebastián A. Buckhout-White, Susan Mathur, Divita Medintz, Igor L. and Melinger, Joseph S. 2018. Optical Properties of Vibronically Coupled Cy3 Dimers on DNA Scaffolds. The Journal of Physical Chemistry B, Vol. 122, Issue. 19, p. 5020.

    Mohammed, Abdulmelik Orponen, Pekka and Pai, Sachith 2018. Unconventional Computation and Natural Computation. Vol. 10867, Issue. , p. 159.

    Orponen, Pekka 2018. Design methods for 3D wireframe DNA nanostructures. Natural Computing, Vol. 17, Issue. 1, p. 147.

    Leśniewska, Barbara Coleman, Anthony W. Tauran, Yannick Perret, Florent and Suwińska, Kinga 2016. Pseudopolymorphs – a variety of self-organization of para-sulphonato-calix[8]arene and phenanthroline in the solid state. CrystEngComm, Vol. 18, Issue. 46, p. 8858.


Book description

Written by the founder of the field, this is the first text of its kind, providing a definitive introduction to structural DNA nanotechnology. Readers will learn everything there is to know about the subject from the unique perspective of the leading expert in the field. Topics covered range from origins and history, to design, experimental techniques, DNA nanomechanics devices, computing, and the uses of DNA nanotechnology in organising other materials. Clearly written, and benefiting from over 200 full colour illustrations, readers will find this an accessible and easy to follow text that is essential reading for anyone who wants to enter this rapidly growing field. Ideal for advanced undergraduate and graduate students, as well as researchers in a range of disciplines including nanotechnology, materials science, physics, biology, chemistry, computational science and engineering.


'The first of its kind, it will undoubtedly become the Bible for DNA self-assembly and nanoscale 3D printing. The visionary father of the field of structural DNA nanotechnology, Nadrian C. Seeman, lays out its principles lucidly and with superb graphics to match. For anyone curious about synthetic DNA technologies or in connecting these principles with current research, this is a must-have-must-read.'

Yamuna Krishnan - University of Chicago

'Ned Seeman invented and pioneered structural DNA nanotechnology in the 1980s and he has been in the front line of the field since then. For many years he was alone in the field and it was considered as a mere curiosity by many scientists and ignored by most others. However, during the past 15 years the field has blossomed and today constitutes a unique approach to organize matter at the nanoscale by self-assembly. The book gives the best possible first-hand insight into this field and its amazing development.'

Kurt Vesterager Gothelf - Aarhus Universitet, Denmark

'The book is an inspiring insight into the design and development of DNA motifs used as building blocks, molecular devices, and information processing tools. It is stimulating to both students and professionals with detailed introduction to blueprint composition and experimental strategies. These strategies have provided an exponential growth in the subject and established the field of DNA nanotechnology.'

Natasha Jonoska - University of South Florida

'The pioneer of the field of structural DNA nanotechnology, Nadrian C. Seeman, presents the foundations, the state of the art, and the stories leading to the development of this fascinating field that today allows researchers around the globe to control matter with sub-nanometer precision by means of self-assembly. Students in nanoscience-related fields will greatly benefit from this book, and for researchers planning to work in the fast growing field of DNA nanotechnology, it is a must.'

Tim Liedl - Ludwig-Maximilians-Universität Munchen

'This is a wonderful book. It systematically covers all major aspects of DNA nanotechnology, a rapidly evolving research field. Though there are multiple books and reviews that cover the current topics of this field, this book is the only one that provides insights on how this field originated, developed, differentiated, and flourished. I enjoyed reading this book particularly because of its emphasis on structural bases of DNA molecules; quite often neglected by people now. I fully expect that this book will serve as a handy reference for practitioners in the field of DNA nanotechnology, as a textbook for graduate students and undergraduate students, and also as a historic book for people studying science history. For sure, this book will be the textbook for my graduate course, bionanotechnology, at Purdue University.'

Chengde Mao - Purdue University, Indiana

'This book provides an authoritative introduction to the nascent field of structural DNA nanotechnology … The rapid recent advances in DNA nanotechnology, particularly in building functional 3D structures, devices, and systems with DNA nanotechnology, are a testament of the need for authoritative books like this one. This book features more than 200 full-color illustrations and hundreds of authoritative references, and can serve as a textbook for graduate students. It is well written and easy to follow. It is a must-have book for those who plan to work in the field of DNA nanotechnology. It is also a useful reference book for researchers and graduate students interested in nanoscience, nanotechnology, nanofabrication, nanomedicine, and related fields.'

Qinghuang Lin Source: MRS Bulletin

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