高分子 Vol.69 No.10
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特集 今こそ語ろう高分子反応
展望 COVER STORY: Highlight Reviews
高分子反応を利用したメカノクロミックポリマー
Mechanochromic Polymers Driven by Polymer Reactions
大塚 英幸・青木 大輔
Hideyuki OTSUKA, Daisuke AOKI
<要旨> 力学的刺激により物質の色彩や発光特性などの光物性が変化する「メカノクロミズム」は、魅力的な現象であるだけでなく、材料の応力検知や破壊機構の解明などへの応用が期待されている。本稿では、高分子反応を利用して力学的刺激の可視化を実現できる「メカノクロミックポリマー」の設計について、最近の研究動向を紹介する。
Keywords: Polymer Reactions / Mechanochromism / Mechanochromic Polymers / Mechanofunctional Polymers / Stress Visualization / Isomerization / Polymer Chain Scission
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Recent Advances in Macromolecular Coupling Reactions Tomohiro KUBO and Brent S. SUMERLIN
<要旨> As the toolbox of established polymer reactions is expanded, we can use more tailored approaches to meet various synthetic needs. Herein, we highlight polymer-polymer coupling reactions that demonstrate efficacy for block copolymer synthesis and bioconjugation.
Keywords: Polymer-Polymer Coupling / Block Copolymers / Living Polymerization / Functional Polymers
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トピックス COVER STORY: Topics and Products
クリックケミストリーを制御して利用する分子連結法の開発
Molecular Conjugation by Controlled Click Chemistry
吉田 優
Suguru YOSHIDA
<要旨> On the basis of diverse reactivities of azides and azidophiles including terminal alkynes and cyclooctynes, we have developed several methods for controlling click chemistry. Indeed, the transformations involving selective triazole formations allowed for the efficient preparation of unsymmetric bis(triazole)s using diverse platform molecules.
Keywords: Click Chemistry / Azide / Alkyne / Cycloalkyne / Triazole
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光で配位高分子を創る:イオン液体と配位高分子の可逆転換
Reversible Transformation Between Ionic Liquids and Coordination Polymers
持田 智行
Tomoyuki MOCHIDA
<要旨> We synthesized ionic liquids and poly(ionic liquid)s containing cationic ruthenium sandwich complexes. These liquids formed coordination polymers upon photoirradiation, accompanied by changes in ionic conductivity and viscoelasticity. The products underwent reverse reactions upon heating, thereby enabling the reversible control of the physical properties by the application of light and heat.
Keywords: Ionic Liquids / Poly(ionic liquid)s/ Ruthenium Complexes / Photochemical Reaction / Ionic Conductivity
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高分子反応で分解する
Controlled Degradation by Polymer Reaction
木原 伸浩
Nobuhiro KIHARA
<要旨> Degradation should be suppressed during use even for the highly degradable polymer. Since all-or-nothing control is impossible when a natural stimulus is used to initiate the degradation, an artificial stimulus must be applied. We have reported that diacylhydrazine is stable in air although it degrades rapidly by the action of sodium hypochlorite solution. Polydiacylhydrazine is a typical high performance polymer, while it is oxidized to carboxylic acid and nitrogen gas. Novel bisphenols bearing the diacylhydrazine moiety were developed as the curing agent for epoxy resins, and the cured resin can be used as an adhesive. The adhered materials can be dismantled spontaneously by sodium hypochlorite solution to recover the original materials without the trace of the adhesive on the surface. Diacylhydrazine-crosslinked gel was prepared. When starting from the copolymer of methyl acrylate, the original polymer can be recovered after the crosslinking-decrosslinking cycle. A crosslinked transparent monolith, which undergoes oxidative degradation, can be prepared by bulk copolymerization with bifunctional monomer bearing diacylhydrazine.
Keywords: Artificial Stimulus / Sodium Hypochorite / Oxidative Degradation / Diacylhydrazine / Epoxy Resin / Degradable Adhesive / Reversible Crosslinking / Crosslinked Monolith
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高分子の劣化反応を解析する
Analysis of Polymer Degradation Reactions
山根 祥吾・水門 潤治
Shogo YAMANE, Junji MIZUKADO
<要旨> Recently the application of polymer materials to transportation equipment such as automobiles and airplanes has been expanding, and deterioration and stability of polymer have become more important. This paper introduces the latest research of polymer degradation and stability evaluation using mass spectrometry. Degradation analysis using high-resolution MALDI-TOFMS has the feature that the structure can be determined from the composition formula. Furthermore, it becomes possible to easily classify each degraded structure by KMD analysis. LC-MS is effective for qualitative / quantitative analysis of additives that have a great influence on the stability of polymer materials, however, there are some points to note in quantitative analysis. The mass spectrometry methods introduced in this paper are effective not only for degradation analysis but also for structural analysis of polymers and analysis of polymer reactions.
Keywords: Polymer Degradation / Stability / Mass Spectrometry / MALDI-TOFMS / LC-MS
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CO2を原材料に用いるポリウレタン合成反応と材料開発
Material Development in New Polyurethane Synthesis Reactions using CO2 Gas as Raw Material
木村 千也
Kazuya KIMURA
<要旨> Recently, the development of sustainable polymers has gained great attention. We focused on the urethane synthesis reaction using CO2 as a raw material and tried to use it for creating a new material. Our developed materials were polyurethane resin obtained from epoxy, CO2, and amine. Major features of this materials are not only using of CO2 in its production but they also have unique chemical structures. They are a new type of polyurethane resins having hydroxyl groups, so we call them HPUs. Compared to conventional urethane resin, HPU has a higher mechanical strength, and has excellent gas barrier properties and metal adhesion. On the other hand, HPU has some weak points in handling when used in similar ways as existing polyurethane (PU) substitute applications. Therefore, we tried to develop a new material that eliminates the drawbacks by copolymerizing PU. As a result, we have achieved the development of a new polyurethane product that can be differentiated in terms of performance and can be used in the same way as conventional PU.
Keywords: Sustainable Polymers / Polyurethane Resine / Gas Barrier / Metal Adhesion
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グローイングポリマー Polymer Science and I: A Personal Account
グローイングサルファー
Growing Sulfur
荒川 優樹
Yuki ARAKAWA
<要旨> This introduction describes the very small journey of my research on sulfur-containing liquid crystal materials and the associated factors that inspired my research.
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高分子科学最近の進歩 Front-Line Polymer Science
二酸化炭素とエポキシドの交互共重合における最新動向
Recent Progress in Alternative Copolymerization of Carbon Dioxide and Epoxide
本田 正義・杉本 裕
Masayoshi HONDA, Hiroshi SUGIMOTO
<要旨> Recent advances in aliphatic polycarbonate synthesis via alternating copolymerization of CO2 and epoxide are summarized. First, the development of the catalyst is described. In addition to the widely used Co salen and porphyrin catalysts, various elements such as Cr, Al, Fe, Ni, Zn, B based catalysts with various ligands have been reported. Binary Co and bimetallic catalyst systems have been intensively researched. Secondly, the improvement of the properties of aliphatic polycarbonate is described to develop appropriate applications. Epoxides with sterically bulky pendant groups drastically improved the glass transition temperature. The controll of stereoregularity and the formation of the stereocomplex gave a cristallinity that cannot be observed in atactic polymers. The pendant hydroxy or carboxyl groups have an interesting effect on hydrophilic-hydrophobic and thermal properties. At last, other types of polymerization are introduced: copolymerization of CO2 and oxetane, and polycondensation of CO2 and diol.
Keywords: Alternative Copolymerization / Carbon Dioxide / Epoxide / Aliphatic Polycarbonate
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