James M. Tsay
University of California, Los Angeles
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Publication
Featured researches published by James M. Tsay.
IEEE Transactions on Nanobioscience | 2006
Gopal Iyer; Fabien Pinaud; James M. Tsay; Jack Li; Laurent A. Bentolila; Shimon Weiss
Quantum dots (QDOTs) have been widely recognized by the scientific community and the biotechnology industry, as witnessed by the exponential growth of this field in the past several years. We describe the synthesis and characterization of visible and near infrared QDots-a critical step for engineering organic molecules like proteins and peptides for building nanocomposite materials with multifunctional properties suitable for biological applications
Biomedical optics | 2006
Gopal Iyer; Jack Li; Fabien Pinaud; James M. Tsay; Laurent A. Bentolila; Shimon Weiss
We have synthesized high quality type-II CdTe/CdSe near infrared quantum dots using successive ion layer adsorption and reaction chemistry. Transmission electron microscopy reveals that CdTe/CdSe can be synthesized layer by layer yielding quantum dots of narrow size distribution. Excitation and photoluminescence spectra reveal discrete type-II transitions, which correspond to energy lower that type-I bandgap. We have used a peptide coating technique on type-II and commercial near infrared quantum dots for delivery in live animals and cultured cells.
Biomedical optics | 2005
James M. Tsay; Soeren Doose; Fabien Pinaud; Shimon Weiss
Colloidal NCs consist of an inorganic particle and an organic coating that determines their solubility, functionality, and influences their photophysics. In order for these NCs to be biocompatible, they must be water-soluble, nontoxic to the cell, and offer conjugation chemistries for attaching recognition molecules to their surfaces. In addition they should efficiently target to biomolecules of interest, be chemically stable, and preserve their high photostability. The requirements for their application in single-molecule biological studies are even more stringent: fluorescent NCs should be monodisperse, have relatively small size (to limit steric hindrance), reduced blinking, large saturation intensity, and high quantum yield (QY).
Science | 2005
Fabien Pinaud; Laurent A. Bentolila; James M. Tsay; Sören Doose; Jianqing J. Li; Gobalakrishnan Sundaresan; Anna M. Wu; Sanjiv S. Gambhir; Shimon Weiss
Biomaterials | 2006
Fabien Pinaud; Laurent A. Bentolila; James M. Tsay; Sören Doose; Jack Li; Gopal Iyer; Shimon Weiss
Journal of the American Chemical Society | 2007
James M. Tsay; Michael Trzoss; Lixin Shi; Xiangxu Kong; Matthias Selke; Michael E. Jung; Shimon Weiss
Journal of the American Chemical Society | 2004
James M. Tsay; Malte Pflughoefft; Laurent A. Bentolila; Shimon Weiss
Journal of the American Chemical Society | 2006
James M. Tsay; Sören Doose; Shimon Weiss
Analytical Chemistry | 2005
Sören Doose; James M. Tsay; Fabien Pinaud; Shimon Weiss
Chemistry & Biology | 2005
James M. Tsay