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Ultrasensitive Microstring Resonators for Solid State Thermomechanical Analysis of Small and Large Molecules

机译:用于小型和大型分子固态热机械分析的超灵敏微弦谐振器

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摘要

Thermal analysis plays an important role in both industrial and fundamental research and is widely used to study thermal characteristics of a variety of materials. However, despite considerable effort using different techniques, research struggles to resolve the physicochemical nature of many thermal transitions such as amorphous relaxations or structural changes in proteins. To overcome the limitations in sensitivity of conventional techniques and to gain new insight into the thermal and mechanical properties of small- and large-molecule samples, we have developed an instrumental analysis technique using resonating low-stress silicon nitride microstrings. With a simple sample deposition method and postprocess data analysis, we are able to perform rapid thermal analysis of direct instrumental triplicate samples with only pico- to nanograms of material. Utilizing this method, we present the first measurement of amorphous alpha and beta relaxation, as well as liquid crystalline transitions and decomposition of small-molecule samples deposited onto a microstring resonator. Furthermore, sensitive measurements of the glass transition of polymers and yet unresolved thermal responses of proteins below their apparent denaturation temperature, which seem to include the true solid state glass transition of pure protein, are reported. Where applicable, thermal events detected with the setup were in good agreement with conventional techniques such as differential scanning calorimetry and dynamic mechanical analysis. The sensitive detection of even subtle thermal transitions highlights further possibilities and applications of resonating microstrings in instrumental physicochemical analysis.
机译:热分析在工业研究和基础研究中都起着重要作用,被广泛用于研究各种材料的热特性。然而,尽管使用了不同的技术付出了巨大的努力,但是研究仍在努力解决许多热转变的物理化学性质,例如非晶态弛豫或蛋白质的结构变化。为了克服常规技术灵敏度的局限性并获得对小分子和大分子样品热力学性能的新见解,我们开发了一种使用共振低应力氮化硅微弦的仪器分析技术。通过简单的样品沉积方法和后处理数据分析,我们仅用皮克至纳克级的材料即可对直接的一式三份样品进行快速热分析。利用这种方法,我们提出了无定形α和β弛豫以及液晶转变和沉积在微串谐振器上的小分子样品分解的首次测量。此外,据报道,对聚合物的玻璃化转变进行了灵敏的测量,并且在其表观变性温度以下仍未解析蛋白质的热响应,这似乎包括纯蛋白质的真正固态玻璃化转变。在适用的情况下,使用该设置检测到的热事件与常规技术(例如差示扫描量热法和动态力学分析)非常一致。即使是微妙的热转变,其灵敏的检测也突出了在仪器物理化学分析中共振微弦的进一步可能性和应用。

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  • 来源
    《Journal of the American Chemical Society》 |2018年第50期|17522-17531|共10页
  • 作者单位

    Univ Copenhagen, Dept Pharm, Univ Pk 2, DK-2100 Copenhagen, Denmark|Tech Univ Denmark, Dept Micro & Nanotechnol, DK-2800 Lyngby, Denmark;

    Tech Univ Denmark, Dept Micro & Nanotechnol, DK-2800 Lyngby, Denmark;

    Tech Univ Denmark, Dept Micro & Nanotechnol, DK-2800 Lyngby, Denmark;

    Tech Univ Denmark, Dept Micro & Nanotechnol, DK-2800 Lyngby, Denmark;

    Univ Copenhagen, Dept Pharm, Univ Pk 2, DK-2100 Copenhagen, Denmark;

    Tech Univ Denmark, Dept Micro & Nanotechnol, DK-2800 Lyngby, Denmark|Danish Natl Res Fdn, DK-2800 Lyngby, Denmark|Villum Fondens Ctr Intelligent Drug Delivery & Se, DK-2800 Lyngby, Denmark;

    Univ Copenhagen, Dept Pharm, Univ Pk 2, DK-2100 Copenhagen, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 04:09:36

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