Solvent-Free Synthesis of Layered Polymer Crystals

被引:0
作者
Toru Odani
Akikazu Matsumoto
机构
[1] Japan Science and Technology Corporation (JST),PRESTO
[2] Osaka City University,Department of Applied Chemistry, Graduate School of Engineering
来源
Polymer Journal | 2002年 / 34卷
关键词
Topochemical Polymerization; Polymer Crystal; Intercalation; Solvent-Free Organic Reaction; Green Chemistry; Muconic Acid;
D O I
暂无
中图分类号
学科分类号
摘要
A new solvent-free synthetic process of layered polymer crystals as novel organic intercalation materials from (Z,Z)-muconic acid is described. This process includes the monomer synthesis, topochemical polymerization, transformation to poly(muconic acid), and intercalation. Alkylammonium muconate monomers were prepared by grinding muconic acid and the corresponding alkylamines in a ceramic mortar without any solvent. Topochemical polymerization of the alkylammonium muconates in the crystalline state was carried out under UV irradiation with a high-pressure mercury lamp or sunlight. Transformation from poly(alkylammonium muconate) to poly(muconic acid) was achieved by thermolysis at 250 °C under reduced pressure with a maintenance of their crystallinity. Intercalation of alkylamines into the polymer crystals proceeded by grinding poly(muconic acid) and alkylamine similar to the monomer synthesis. This process is a new type of polymer synthesis using green and sustainable materials and reactions as the solvent-free system.
引用
收藏
页码:841 / 846
页数:5
相关论文
共 50 条
  • [41] Niobic Acid as a Recyclable Heterogeneous Catalyst for the Solvent-Free Synthesis of Substituted Benzimidazoles
    Vieira, Beatriz M.
    Barcellos, Angelita M.
    Schumacher, Ricardo F.
    Lenardao, Eder J.
    Alves, Diego da Silva
    CURRENT GREEN CHEMISTRY, 2014, 1 (02) : 136 - 144
  • [42] Triethylamine Hydroiodide as a Bifunctional Catalyst for the Solvent-Free Synthesis of 2-Oxazolidinones
    Nishiyori, Ryuichi
    Okuno, Ken
    Shirakawa, Seiji
    EUROPEAN JOURNAL OF ORGANIC CHEMISTRY, 2020, 2020 (31) : 4937 - 4941
  • [43] Solvent-Free or Less-Solvent Solid State Reactions
    Lei, Lixu
    Zhou, Yiming
    PROGRESS IN CHEMISTRY, 2020, 32 (08) : 1158 - 1171
  • [44] Solvent-free reactivity in the undergraduate organic laboratory
    Dicks, Andrew P.
    GREEN CHEMISTRY LETTERS AND REVIEWS, 2009, 2 (02) : 87 - 100
  • [45] Tetrahydropyranylation of Alcohols Under Solvent-Free Conditions
    Hajipour, Abdol R.
    Kargosha, Majid
    Ruoho, Arnold E.
    SYNTHETIC COMMUNICATIONS, 2009, 39 (06) : 1084 - 1091
  • [46] Catalyst-Free and Solvent-Free Facile Hydroboration of Imines
    Pandey, Vipin K.
    Donthireddy, Siva Nagendra Reddy
    Rit, Arnab
    CHEMISTRY-AN ASIAN JOURNAL, 2019, 14 (19) : 3255 - 3258
  • [47] Solvent-Free Enantioselective Organocatalyzed Aldol Reactions
    Banon-Caballero, Abraham
    Guillena, Gabriela
    Najera, Carmen
    MINI-REVIEWS IN ORGANIC CHEMISTRY, 2014, 11 (02) : 118 - 128
  • [48] Solvent-free synthesis of meso-tetraarylporphyrins in air: product diversity and yield optimization
    Nia, Shabnam
    Gong, Xianchang
    Drain, Charles Michael
    Jurow, Matthew
    Rizvi, Waqar
    Qureshy, Meroz
    JOURNAL OF PORPHYRINS AND PHTHALOCYANINES, 2010, 14 (07) : 621 - 629
  • [49] Synthesis of Phosphine Chalcogenides Under Solvent-Free Conditions Using a Rotary Ball Mill
    Kumar, Rajnish
    Kumar, Saurabh
    Pandey, Madhusudan K.
    Kashid, Vitthalrao S.
    Radhakrishna, Latchupatula
    Balakrishna, Maravanji S.
    EUROPEAN JOURNAL OF INORGANIC CHEMISTRY, 2018, (08) : 1028 - 1037
  • [50] SYNTHESIS OF THIOL ESTERS BY THE REACTION OF RICINOLEIC ACID WITH THIOLS UNDER SOLVENT-FREE CONDITIONS
    Lara, Renata G.
    Rodrigues, Dielson C.
    Mendes, Samuel R.
    Panatieri, Rodrigo B.
    Jacob, Raquel G.
    Alves, Diego
    Lenardao, Eder J.
    Perin, Gelson
    SYNTHETIC COMMUNICATIONS, 2011, 41 (20) : 2974 - 2984