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Analytical Chemistry|January 26, 2010
Selective detection of HbA1c using surface enhanced resonance Raman spectroscopyManikantan Syamala Kiran, Tamitake Itoh, Ken-ichi Yoshida, et al.Chemical Reviews|February 6, 2023
Toward a New Era of SERS and TERS at the Nanometer Scale: From Fundamentals to Innovative ApplicationsTamitake Itoh, Marek Procházka, Zhen-Chao Dong, et al.Langmuir : the ACS Journal of Surfaces and Colloids|August 28, 2007
Quantum dot-insect neuropeptide conjugates for fluorescence imaging, transfection, and nucleus targeting of living cellsVasudevanpillai Biju, Damodaran Muraleedharan, Ken-ichi Nakayama, et al.ACS Nano|April 4, 2012
FRET from quantum dots to photodecompose undesired acceptors and report the condensation and decondensation of plasmid DNAVasudevanpillai Biju, Abdulaziz Anas, Hidetaka Akita, et al.Physical Chemistry Chemical Physics : PCCP|May 24, 2013
Plasmonic staining of DNA molecules with photo-induced Ag nanoparticles monitored using dark-field microscopyYuko S Yamamoto, Ken Hirano, Tomomi Ishido, et al.Nano Letters|April 4, 2013
Plasmonic imaging of brownian motion of single DNA molecules spontaneously binding to Ag nanoparticlesKen Hirano, Tomomi Ishido, Yuko S Yamamoto, et al.Nano Reviews|December 2, 2011
Single-molecule photochemical reactions of Auger-ionized quantum dotsMorihiko Hamada, Edakkattuparambil Sidharth Shibu, Tamitake Itoh, et al.Analytical and Bioanalytical Chemistry|June 27, 2009
Imaging the cell wall of living single yeast cells using surface-enhanced Raman spectroscopyAthiyanathil Sujith, Tamitake Itoh, Hiroko Abe, et al.Langmuir : the ACS Journal of Surfaces and Colloids|March 30, 2012
Inhibition assay of yeast cell walls by plasmon resonance Rayleigh scattering and surface-enhanced Raman scattering imagingKiran Manikantan Syamala, Hiroko Abe, Yasuko Fujita, et al.Nature Communications|September 25, 2020
Porous carbon nanowire array for surface-enhanced Raman spectroscopyNan Chen, Ting-Hui Xiao, Zhenyi Luo, et al.Pageof 6