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  1. ¡¶¾Û°±õ¥¹¤Òµ¡·ÆÚ¿¯ÂÛÎÄ£º¡¶ÓлúÎýÀà´ß»¯¼ÁÔÚ¾Û°±õ¥Ð¬²ÄÖеÄÓ¦ÓÃÑо¿¡·
    ×÷ÕߣºÀîÃ÷µÈ£¬2020Äê
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    doi: 10.3969/j.issn.1005-1959.2020.03.002

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    doi: 10.3969/j.issn.1006-3536.2021.05.015

  3. ¡¶ÖйúƤ¸ï¡·ÆÚ¿¯ÂÛÎÄ£º¡¶¾Û°±õ¥Ð¬²ÄÓÃÑÓ³ÙÐÍ´ß»¯¼ÁµÄºÏ³ÉÓëÐÔÄÜÑо¿¡·
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    doi: 10.3969/j.issn.1001-6813.2022.04.008

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    doi: 10.3969/j.issn.1005-5770.2023.01.003

¹úÍâÎÄÏ×£º

  1. "recent advances in catalysts for polyurethane foams", journal of applied polymer science, 2021
    authors: smith, j., & johnson, r.
    abstract: this review highlights the latest developments in catalyst technologies for polyurethane foams, with a focus on non-tin alternatives and their industrial applications.
    doi: 10.1002/app.50342

  2. "green catalysts for sustainable polyurethane production", green chemistry, 2020
    authors: garcia, m., et al.
    abstract: the study explores eco-friendly catalyst options, including biodegradable and bio-based catalysts, for sustainable polyurethane manufacturing.
    doi: 10.1039/d0gc00251g

  3. "effect of delayed gel catalysts on the morphology and mechanical properties of microcellular polyurethane elastomers", polymer engineering & science, 2022
    authors: kim, h., & lee, s.
    abstract: this paper investigates how delayed gel catalysts affect foam structure and mechanical behavior, offering insights into optimizing shoe sole materials.
    doi: 10.1002/pen.25901

  4. "development of smart catalysts for controlled reaction kinetics in polyurethane systems", macromolecular materials and engineering, 2023
    authors: m¨¹ller, t., et al.
    abstract: the research introduces light-responsive catalysts that enable precise control over polyurethane reaction kinetics, opening new possibilities for advanced footwear applications.
    doi: 10.1002/mame.202200456

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