By Chen, Wen-Chang
Info know-how is key to our way of life, and the restrictions of silicone dependent reminiscence platforms suggest a starting to be volume of study is focussed on discovering a cheap replacement to satisfy our wishes and make allowance the ongoing improvement of the undefined. Inorganic silicone established expertise is more and more high priced and intricate and is bodily constrained through the issues of thinning out. natural electric memory Read more...
Read Online or Download Electrical memory materials and devices PDF
Similar general & reference books
Writing Reaction Mechanisms in Organic Chemistry
Presentation is apparent and instructive: scholars will discover ways to realize that a few of the reactions in natural chemistry are heavily similar and never self sufficient evidence desiring unrelated memorization. The booklet emphasizes that derivation of a mechanism isn't really a theoretical method, yet a method of utilising wisdom of alternative comparable reactions and response stipulations to the recent response.
Introduction to Chemical Nomenclature
Reliable classic publication
- Differential Equations with Maxima
- Chemical Reactions Their Theory and Mechanism
- Conducting Polymer Nanocomposites for Supercapacitors
- Chemistry of Adamantanes
- Probiotics: The scientific basis
Additional info for Electrical memory materials and devices
Sample text
J. Xu, C. Tang, Q. -H. -M. Liu and W. Huang, J. Mater. , 2012, 22, 22964. J. Liu, Z. Yin, X. Cao, F. Zhao, A. Lin, L. Xie, Q. Fan, F. Boey, H. Zhang and W. Huang, ACS Nano, 2010, 4, 3987. -C. -L. -C. Chen, K. Sugiyama and A. Hirao, Macromol. , 2011, 32, 528. -L. -L. -C. Chen, ACS Appl. Mater. Interfaces, 2011, 3, 4504. S. Gao, C. Song, C. Chen, F. Zeng and F. Pan, J. Phys. Chem. C, 2012, 116, 17955. View Online 07:43:14. -J. -C. -S. Liou, Chem. , 2013, 49, 2804. H. S. Majumdar, J. K. Baral, R.
Xu, Y. Li, S. Ji, N. Li, L. Wang, J. Zheng and J. Lu, Adv. , 2012, 24, 6210. L. O. Chua, IEEE Trans. Circuit Theory, 1971, 18, 507. L. Chua, Appl. Phys. A: Mater. Sci. , 2011, 102, 765. A. Bandyopadhyay, S. Sahu and M. Higuchi, J. Am. Chem. , 2011, 133, 1168. S. M. Yoon, S. C. Warren and B. A. Grzybowski, Angew. , Int. , 2014, 53, 4437. H. Jiang, H. Zhao, K. K. Zhang, X. Chen, C. Kloc and W. Hu, Adv. , 2011, 23, 5075. -C. -L. -C. Chen, Adv. Funct. , 2013, 23, 4960. -C. -L. -Y. Lee, Y.
D. Ling, Y. Song, S. J. Ding, C. X. Zhu, D. S. H. Chan, D. L. Kwong, E. T. Kang and K. G. Neoh, Adv. , 2005, 17, 455. -D. Zhuang, Y. Chen, G. -P. -X. -T. -G. Neoh, B. -H. -X. Li, Adv. , 2010, 22, 1731. B. Zhang, G. Liu, Y. -J. -X. -G. Neoh, C. -T. –Eur. , 2011, 17, 13646. B. -L. Liu, Y. -G. -X. -X. -S. -T. –Eur. , 2011, 17, 10304–10311. D. He, H. Zhuang, H. Liu, H. Liu, H. Li and J. Lu, J. Mater. Chem. C, 2013, 1, 7883. S. L. Lim, Q. Ling, E. Y. H. Teo, C. X. Zhu, D. S. H. -T. Kang and K.