首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Polymer-Based Black Phosphorus (bP) Hybrid Materials by in Situ Radical Polymerization: An Effective Tool To Exfoliate bP and Stabilize bP Nanoflakes
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Polymer-Based Black Phosphorus (bP) Hybrid Materials by in Situ Radical Polymerization: An Effective Tool To Exfoliate bP and Stabilize bP Nanoflakes

机译:基于聚合物的黑磷(BP)杂种材料通过原位自由基聚合:剥离BP和稳定BP纳米薄片的有效工具

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摘要

Black phosphorus (bP) has been recently investigated for next generation nanoelectronic multifunctional devices. However, the intrinsic instability of exfoliated bP (the bP nanoflakes) toward both moisture and air has so far overshadowed its practical implementation. In order to contribute to fill this gap, we report here the preparation of new hybrid polymer-based materials where bP nanoflakes (bPn) exhibit a significantly improved stability. The new materials have been prepared by different synthetic paths including: (i) the mixing of conventionally liquid phase exfoliated bP (in dimethyl sulfoxide, DMSO) with poly (methyl methacrylate) (PMMA) solution; (ii) the direct exfoliation of bP in a polymeric solution; (iii) the in situ radical polymerization after exfoliating bP in the liquid monomer (methyl methacrylate, MMA). This last methodology concerns the preparation of stable suspensions of bPn-MMA by sonication-assisted liquid-phase exfoliation (LPE) of bP in the presence of MMA followed by radical polymerization. The hybrids characteristics have been compared in order to evaluate the bP dispersion and the effectiveness of the bPn interfacial interactions with polymer chains aimed at their long-term environmental stabilization. The passivation of the bPn is particularly effective when the hybrid material is prepared by in situ polymerization. By using this synthetic methodology, the nanoflakes, even if with a gradient of dispersion (size of aggregates), preserve their chemical structure from oxidation (as proved by both Raman and P-31-solid state NMR studies) and are particularly stable to air and UV light exposure. The feasibility of this approach, capable of efficiently exfoliating bP while protecting the bPn, has been then verified by using different vinyl monomers (styrene and N-vinylpyrrolidone), thus obtaining hybrids where the nanoflakes are embedded in polymer matrices with a variety of intriguing thermal, mechanical, and solubility characteristics.
机译:最近对下一代纳米电子多功能装置研究了黑磷(BP)。然而,迄今为止,剥落的BP(BP纳米薄饼)的内在不稳定性迄今为止已经过度地掩盖了其实际实施。为了有助于填补这种差距,我们在此报告了制备新的杂种聚合物基材料,其中BP纳米薄蛋白(BPN)表现出显着提高的稳定性。通过不同的合成路径制备了新材料,包括:(i)与聚(甲基丙烯酸甲酯)(PMMA)溶液的常规液相剥离BP(二甲基亚甲醚,DMSO)混合; (ii)聚合物溶液中Bp的直接剥离; (iii)在液体单体中剥离Bp后的原位自由基聚合(MMA)。该最后方法涉及通过在MMA存在下,通过自由基聚合,通过对BP的超声辅助液相剥离(LPE)制备BPN-MMA的稳定悬浮液。比较了杂交种特征,以评估BP分散和BPN界面相互作用与聚合物链的有效性,其目的是它们的长期环境稳定化。当通过原位聚合制备杂化材料时,BPN的钝化特别有效。通过使用这种合成方法,即使以分散体(聚集体的尺寸)梯度,纳米薄膜,从氧化中保持其化学结构(如拉曼和P-31-固态NMR研究),并且对空气特别稳定和紫外线曝光。然后通过使用不同的乙烯基单体(苯乙烯和N-乙烯基吡咯烷酮)来验证能够在保护BPN的同时有效地剥离BP的这种方法的可行性,从而获得含有纳米薄片的杂交物,其中纳米薄片以各种有趣的热量嵌入聚合物基质中,机械和溶解度特性。

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    CNR ICCOM Ist Chim Composti Organomet SS Pisa Via Moruzzi 1 I-56124 Pisa Italy;

    CNR ICCOM Ist Chim Composti Organomet SS Pisa Via Moruzzi 1 I-56124 Pisa Italy;

    CNR ICCOM Ist Chim Composti Organomet SS Pisa Via Moruzzi 1 I-56124 Pisa Italy;

    CNR ICCOM Ist Chim Composti Organomet SS Pisa Via Moruzzi 1 I-56124 Pisa Italy;

    CNR ICCOM Ist Chim Composti Organomet SS Pisa Via Moruzzi 1 I-56124 Pisa Italy;

    CNR ICCOM Ist Chim Composti Organomet SS Pisa Via Moruzzi 1 I-56124 Pisa Italy;

    CNR ICCOM Ist Chim Composti Organomet SS Pisa Via Moruzzi 1 I-56124 Pisa Italy;

    CNR ICCOM Ist Chim Composti Organomet SS Pisa Via Moruzzi 1 I-56124 Pisa Italy;

    CNR Ist Nanosci NEST Piazza San Silvestro 12 I-56100 Pisa Italy;

    CNR Ist Nanosci NEST Piazza San Silvestro 12 I-56100 Pisa Italy;

    CNR ICCOM Ist Chim Composti Organomet Via Madonna Piano 10 I-50019 Sesto Fiorentino Italy;

    CNR ICCOM Ist Chim Composti Organomet Via Madonna Piano 10 I-50019 Sesto Fiorentino Italy;

    CNR ICCOM Ist Chim Composti Organomet Via Madonna Piano 10 I-50019 Sesto Fiorentino Italy;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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  • 入库时间 2022-08-20 16:16:32

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