Nature-inspired methylated polyhydroxybutyrates from C1 and C4 feedstocks

被引:27
|
作者
Zhou, Zhiyao [1 ]
LaPointe, Anne M. [1 ]
Shaffer, Timothy D. [2 ]
Coates, Geoffrey W. [1 ]
机构
[1] Cornell Univ, Dept Chem & Chem Biol, Baker Lab, Ithaca, NY 14850 USA
[2] ExxonMobil Technol & Engn Co, Annandale, NJ USA
关键词
RING-OPENING POLYMERIZATION; BETA-BUTYROLACTONE; ZINC CATALYSTS; POLYHYDROXYALKANOATES; COMPLEXES; EPOXIDES; ACID; VALEROLACTONE; CARBONYLATION; EPOXIDATION;
D O I
10.1038/s41557-023-01187-0
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Polyolefin plastics are widely used due to their low cost and outstanding properties, but their environmental persistence presents a major societal challenge. Polyhydroxyalkanoates (PHA) are biodegradable substitutes for polyolefins, but their high cost and thermal instability are impediments to their widespread application. Here we report a series of methylated polyhydroxybutyrates, poly(3-hydroxy-2-methylbutyrate)s, which are structurally inspired by natural PHAs. The cis homopolymers exhibit tacticity-independent crystallinity, which allows for the discovery of high-melting, thermally stable and mechanically tough copolymers, and a full range of polyolefin-like properties can be further achieved by tailoring the cis/trans ratio of the repeating units. Moreover, these materials can be synthesized from inexpensive carbon monoxide and 2-butene feedstocks, and they can be chemically recycled or upcycled at their end of life. The versatile properties, abundant feedstocks and end-of-life utility of this family of polyesters will enable a powerful platform for the discovery of sustainable alternatives to polyolefin plastics.
引用
收藏
页码:856 / +
页数:7
相关论文
共 50 条
  • [11] 空气中C1~C4烃的测定
    于艳洁
    低温与特气, 1994, (04) : 46 - 50
  • [12] COMPARISON OF INHIBITION OF ACTION OF C1 ON C4 BY 2 SYNTHETIC SUBSTRATES OF C1 ESTERASE, TAME AND ATEE
    SHIMADA, A
    TAMURA, N
    IMMUNOLOGY, 1972, 22 (05) : 723 - &
  • [13] Non-Catalytic Steam Reforming of C1–C4 Hydrocarbons
    V. I. Savchenko
    Ya. S. Zimin
    A. V. Nikitin
    I. V. Sedov
    V. S. Arutyunov
    Petroleum Chemistry, 2021, 61 : 762 - 772
  • [14] DETERMINATION OF C1 TO C4 HYDROCARBONS IN SEA WATER BY GAS CHROMATOGRAPHY
    SWINNERTON, JW
    LINNENBOM, VJ
    JOURNAL OF GAS CHROMATOGRAPHY, 1967, 5 (11): : 570 - +
  • [15] The kinetics of C1 to C4 hydrocarbons-NO reactions in relation with reburning
    Dagaut, P
    Luche, J
    Lecomte, F
    Cathonnet, M
    INDUSTRIAL FURNACES AND BOILERS, VOL II, PROCEEDINGS, 2000, : 499 - 509
  • [16] SEPARATION AND IDENTIFICATION OF THE VOLATILE SATURATED FATTY ACIDS (C1 TO C4)
    RAMSEY, LL
    PATTERSON, WI
    JOURNAL OF THE ASSOCIATION OF OFFICIAL AGRICULTURAL CHEMISTS, 1945, 28 (03): : 644 - 656
  • [17] Headaches and Finding of Lipoma Intraduralis Intramedularis Regio C1/C4
    Mitrovic, Dubravka
    Lalic, Tijana
    Vujovic, Vera
    EUROPEAN JOURNAL OF PEDIATRICS, 2017, 176 (11) : 1536 - 1537
  • [18] Transference of reference intervals for C3, C4 and C1 inhibitor.
    Etcheverry, GS
    De Marco, CB
    Verna, JA
    ACTA BIOQUIMICA CLINICA LATINOAMERICANA, 2005, 39 (03): : 323 - 328
  • [19] PERTURBATIONS IN EARLY COMPONENTS OF COMPLEMENT (C1, C4 C2) IN MAN
    GLOVSKY, M
    INAI, S
    NAGAKI, K
    TEJIMA, H
    FEDERATION PROCEEDINGS, 1974, 33 (03) : 647 - 647
  • [20] Electrosynthesis of ethylene glycol from C1 feedstocks in a flow electrolyzer
    Xia, Rong
    Wang, Ruoyu
    Hasa, Bjorn
    Lee, Ahryeon
    Liu, Yuanyue
    Ma, Xinbin
    Jiao, Feng
    NATURE COMMUNICATIONS, 2023, 14 (01)