471 results on '"Yokoyama, Akihiro"'
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102. Chiral Amplification Based on Sergeants and Soldiers Effect in Helically Folded Poly(naphthalenecarboxamide)
103. Synthesis and helical properties of N -substituted p -benzamide random copolymers possessing chiral/achiral and (S )/(R ) side chains
104. Synthesis of a variety of star‐shaped polybenzamides via chain‐growth condensation polymerization with tetrafunctional porphyrin initiator
105. Catalyst-Transfer Suzuki−Miyaura Coupling Polymerization for Precision Synthesis of Poly(p-phenylene)
106. Synthesis of polybenzamide‐b‐polystyrene block copolymer via combination of chain‐growth condensation polymerization and atom transfer radical polymerization
107. Synthesis of Core Cross-Linked Star Polymers Consisting of Well-Defined Aromatic Polyamide Arms
108. Chain-growth condensation polymerization of 4-aminobenzoic acid esters bearing tri(ethylene glycol) side chain with lithium amide base
109. ChemInform Abstract: Chain‐Growth Condensation Polymerization for the Synthesis of Well‐Defined Condensation Polymers and π‐Conjugated Polymers
110. Well-defined star-shaped poly(p -benzamide) via chain-growth condensation polymerization: Use of tetra-functional porphyrin initiator to optimize star polymer formation
111. Chain-Growth Condensation Polymerization for the Synthesis of Well-Defined Condensation Polymers and π-Conjugated Polymers
112. Synthesis of Well‐Defined Hyperbranched Polyamides by Condensation Polymerization of AB2 Monomer through Changed Substituent Effects
113. Synthesis of Well-Defined Polybenzamide-block -Polystyrene by Combination of Chain-Growth Condensation Polymerization and RAFT Polymerization
114. Helical Folding of Poly(naphthalenecarboxamide) Prompted by Solvophobic Effect
115. Synthesis of Well-Defined Miktoarm Star Copolymers of Aromatic Polyether and Polystyrene by Chain-Growth Condensation Polymerization and Atom Transfer Radical Polymerization
116. Shikizai Kyokaishi
117. Successive Chain‐Growth Condensation Polymerization for the Synthesis of Well‐Defined Diblock Copolymers of Aromatic Polyamide and Aromatic Polyether
118. Synthesis via Chain-Growth Condensation Polymerization and Gelating Properties of a Variety of Block Copolymers of Meta- and Para-Substituted Aromatic Polyamides
119. Importance of the Order of Successive Catalyst-transfer Condensation Polymerization in the Synthesis of Block Copolymers of Polythiophene and Poly(p-phenylene)
120. Precision Synthesis of Poly(N-hexylpyrrole) and Its Diblock Copolymer with Poly(p-phenylene) via Catalyst-Transfer Polycondensation
121. One-Pot Synthesis of Cyclic Triamides with a Triangular Cavity from trans-Stilbene and Diphenylacetylene Monomers
122. Synthesis of Well‐Defined Rod‐Coil Diblock Copolymer of Aromatic Polyether and Polyacrylonitrile by Chain‐Growth Condensation Polymerization and Atom Transfer Radical Polymerization
123. Base-promoted Condensation Polymerization of Aminoesters with Diphenylacetylene andtrans-Stilbene Backbones
124. Systolic Dysfunction in Urban Japan Niigata-Sado Heart Failure Study
125. Development of catalyst‐transfer condensation polymerization. Synthesis of π‐conjugated polymers with controlled molecular weight and low polydispersity
126. Catalyst-Transfer Condensation Polymerization for the Synthesis of Well-Defined Polythiophene with Hydrophilic Side Chain and of Diblock Copolythiophene with Hydrophilic and Hydrophobic Side Chains
127. Synthesis of Well-Defined Polystyrene-b-Aromatic Polyether Using an Orthogonal Initiator for Atom Transfer Radical Polymerization and Chain-Growth Condensation Polymerization
128. Converting Step-Growth to Chain-Growth Condensation Polymerization
129. Chain-Growth Polymerization for the Synthesis of Polyfluorene via Suzuki−Miyaura Coupling Reaction from an Externally Added Initiator Unit
130. Synthesis and Self-Assembly of Condensation Polymer Architectures
131. Synthesis of controlled rod–coil block copolymers by a macroinitiator method: Chain-growth polycondensation for an aromatic polyamide from a polystyrene macroinitiator
132. Poly( p-benzamide) having isopropyl-substituted chiral tri(ethylene glycol) side Chain: Synthesis and helical conformation.
133. Synthesis of Well-Defined Polythiophene with Oxyethylene Side Chain: Effect of Phosphine Ligands on Catalyst-Transfer Polycondensation
134. A variety of poly(m‐benzamide)s with low polydispersities from inductive effect‐assisted chain‐growth polycondensation
135. Novel Water‐Soluble Poly(m‐benzamide)s: Precision Synthesis and Thermosensitivity in Aqueous Solution
136. Chain-Growth Polycondensation for Well-Defined Condensation Polymers and Polymer Architecture
137. Solvent and Temperature Effect on Chiral Conformation of Poly(m-benzamide)s
138. Effect of Substituent Orientation on Selectivity between Polymerization and Cyclization: Polycondensation of (Alkylamino)benzoic Acid Dimer Phenyl Esters
139. Synthesis of well‐defined aromatic polyesters by chain‐growth polycondensation under suppression of transesterification
140. Selective Cyclic Trimerization of 4-(Alkylamino)benzoic Acid Dimer Phenyl Esters
141. Inductive Effect-Assisted Chain-Growth Polycondensation. Synthetic Development from para- to meta-Substituted Aromatic Polyamides with Low Polydispersities
142. Convenient Method of Chain‐Growth Polycondensation for Well‐Defined Aromatic Polyamides
143. Well-Defined Star-Shaped Aromatic Polyamides from Chain-Growth Polymerization of Phenyl 4-(Alkylamino)benzoate with Multifunctional Initiators
144. Helical Structures ofN-Alkylated Poly(p-benzamide)s
145. A Flare-Up of Chronic Graft-versus-Host Disease of the Liver That Mimics Acute Hepatitis in a Recipient of an Allogeneic Peripheral Blood Stem Cell Transplant
146. Spontaneous. Formestiozg of Cycgic Compounds in Polycondensation
147. 419 Turbulent Region on a Flat Plate due to a Line of Roughness Elements : Properties of Interfaces in a Turbulence Wedge
148. Chain-growth polycondensation for well-defined condensation polymers and polymer architecture
149. Cover Picture: Macromol. Rapid Commun. 19/2004
150. Synthesis of Poly(3-hexylthiophene) with a Narrower Polydispersity
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