Education Center for Global Leaders in Molecular Systems for Devices

Research Output 2003 2019

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Chapter
2015

Control of surface structure and dynamics of polymers based on precision synthesis

Hirai, T., Oda, Y., Penaloza, D. P., Kawaguchi, D. & Tanaka, K., Sep 1 2015, Anionic Polymerization: Principles, Practice, Strength, Consequences and Applications. Springer Japan, p. 861-880 20 p.

Research output: Chapter in Book/Report/Conference proceedingChapter

Surface structure
Polymers
Surface properties
Agglomeration
2014
107 Citations (Scopus)

Iron-catalyzed cross-coupling reactions

Nakamura, E., Hatakeyama, T., Ito, S., Ishizuka, K., Ilies, L. & Nakamura, M., Jan 1 2014, Organic Reactions. 1 ed. John Wiley and Sons Inc., p. 1-209 209 p. (Organic Reactions; vol. 83, no. 1).

Research output: Chapter in Book/Report/Conference proceedingChapter

Iron
2013

Integration and evaluation of nanophotonic devices using optical near field

Yatsui, T., Nomura, W., Yi, G. C. & Ohtsu, M., Jan 1 2013, Handbook of Nano-Optics and Nanophotonics. Springer Berlin Heidelberg, p. 599-642 44 p.

Research output: Chapter in Book/Report/Conference proceedingChapter

near fields
evaluation
controllability
vapor deposition
photonics

Properties of optical near-field excitation transfers in randomly distributed spherical quantum dots

Nomura, W., Yatsui, T. & Ohtsu, M., Jan 1 2013, Handbook of Nano-Optics and Nanophotonics. Springer Berlin Heidelberg, p. 643-670 28 p.

Research output: Chapter in Book/Report/Conference proceedingChapter

near fields
quantum dots
energy transfer
excitation
optical communication
2010

Nonadiabatic near-field optical polishing and energy transfers in spherical quantum dots

Nomura, W., Yatsui, T. & Ohtsu, M., Jan 4 2010, Progress in Nano-Electro-Optics VII: Chemical, Biological, and Nanophotonic Technologies for Nano-Optical Devices and Systems. Ohtsu, M. (ed.). p. 113-130 18 p. (Springer Series in Optical Sciences; vol. 155).

Research output: Chapter in Book/Report/Conference proceedingChapter

Polishing
Energy transfer
Semiconductor quantum dots
Molecules
Born approximation