Living polymerization of ethylene catalyzed by titanium complexes having fluorine-containing phenoxy− imine chelate ligands

M Mitani, J Mohri, Y Yoshida, J Saito… - Journal of the …, 2002 - ACS Publications
Seven titanium complexes bearing fluorine-containing phenoxy−imine chelate ligands, TiCl
2 {η 2 -1-[C(H) NR]-2-O-3- t Bu-C 6 H 3 } 2 [R = 2,3,4,5,6-pentafluorophenyl (1), R = 2,4,6-…

Living copolymerization of ethylene with norbornene catalyzed by bis (pyrrolide− imine) titanium complexes with MAO

Y Yoshida, J Mohri, S Ishii, M Mitani… - Journal of the …, 2004 - ACS Publications
Bis(pyrrolide−imine) Ti complexes in conjunction with methylalumoxane (MAO) were found
to work as efficient catalysts for the copolymerization of ethylene and norbornene to afford …

A preliminary study of anti-1-amino-3-18F-fluorocyclobutyl-1-carboxylic acid for the detection of prostate cancer

…, LA Williams, W Yu, JR Votaw, Y Yoshida… - Journal of Nuclear …, 2007 - Soc Nuclear Med
We evaluated the feasibility of anti-1-amino-3- 18 F-fluorocyclobutyl-1-carboxylic acid (anti-
18 F-FACBC) in diagnosing prostate cancer (PCa), using a rat orthotopic prostate cancer …

New titanium complexes having two pyrrolide− Imine chelate ligands: syntheses, structures, and ethylene polymerization behavior

Y Yoshida, S Matsui, Y Takagi, M Mitani… - …, 2001 - ACS Publications
New titanium complexes 1−4 having two nonsymmetric bidentate pyrrolide−imine chelate
ligands, [2-(RNCH)C 4 H 3 N] 2 TiCl 2 (1, R = Ph; 2, R = Et; 3, R = n-hexyl; 4, R = cyclohexyl), …

Transport mechanisms of trans-1-amino-3-fluoro [1-14C] cyclobutanecarboxylic acid in prostate cancer cells

S Oka, H Okudaira, Y Yoshida, DM Schuster… - Nuclear medicine and …, 2012 - Elsevier
INTRODUCTION: We investigated the mechanisms of trans-1-amino-3-fluoro[1- 14 C]cyclobutanecarboxylic
acid (anti-[ 14 C]FACBC) transport by human-derived prostate cancer (PCa) …

Bis (pyrrolide-imine) Ti complexes with MAO: A new family of high performance catalysts for olefin polymerization

Y Yoshida, S Matsui, T Fujita - Journal of organometallic chemistry, 2005 - Elsevier
This contribution reports on the syntheses, structures and olefin polymerization behavior of
Ti complexes having a pair of chelating pyrrolide-imine [N − ,N] ligands. X-ray analyses as …

Living ethylene/norbornene copolymerisation catalyzed by titanium complexes having two pyrrolide-imine chelate ligands

Y Yoshida, J Saito, M Mitani, Y Takagi… - Chemical …, 2002 - pubs.rsc.org
Yasunori Yoshida , Junji Saito , Makoto Mitani , Yukihiro Takagi , Shigekazu Matsui , Sei-ichi
Ishii , Takashi Nakano , Norio Kashiwa and Terunori Fujita * … Yoshida, S. Matsui, Y. Takagi …

Microstructure of Highly Syndiotactic “Living” Poly (propylene) s Produced from a Titanium Complex with Chelating Fluorine‐Containing Phenoxyimine Ligands (an FI …

…, M Onda, JI Mohri, SI Ishii, Y Yoshida… - Macromolecular …, 2001 - Wiley Online Library
Highly syndiotactic “living” poly(propylene)s were synthesized at 25C using a bis[N‐(3‐tert‐butylsalicylidene)‐2,3,4,5,6‐pentafluoroanilinato]titanium
(IV) dichloride/MAO catalyst system…

Highly syndiospecific living polymerization of propylene using a titanium complex having two phenoxy-imine chelate ligands

J Saito, M Mitani, J Mohri, S Ishii, Y Yoshida… - Chemistry …, 2001 - academic.oup.com
A titanium complex having fluorine-containing phenoxy-imine chelate ligands, when activated
with methylalumoxane (MAO), promotes a highly stereospecific living polymerization of …

Intravenous administration of human amniotic mesenchymal stem cells in the subacute phase of cerebral infarction in a mouse model ameliorates neurological …

Y Yoshida, T Takagi, Y Kuramoto… - Cell …, 2021 - journals.sagepub.com
Neuro-inflammation plays a key role in the pathophysiology of brain infarction. Cell therapy
offers a novel therapeutic option due to its effect on immunomodulatory effects. Amniotic stem …