Gelardo Andrea, Titaux-Delgado Gustavo A
Instituto de Química Física Blas Cabrera, Consejo Superior de Investigaciones Científicas (IQF-CSIC), Madrid, Spain.
Magn Reson Chem. 2025 Jul 10. doi: 10.1002/mrc.70010.
We present a compact, 3D-printed device designed to facilitate the efficient packing of semisolid or highly viscous samples into 3.2-mm rotors compatible with cryogenic solid-state NMR probes. The tool enables sample loading by centrifugation under standard laboratory conditions, significantly improving packing reproducibility and minimizing sample loss. In contrast to previously reported designs for conventional rotors, this device is optimized for the expanded volume and geometrical constraints of 90-μL rotors used in the Bruker CPMAS cryoprobe. A complementary unloading tool is also described to recover samples or enable rotor reuse. Both tools are compatible with standard benchtop centrifuges and are fully customizable. Their implementation improves sample handling for biological or material samples with limited availability or challenging rheological properties. Open-access 3D design files are provided to support broad adoption and future adaptation to other rotor sizes or sample formats. These devices represent a scalable solution for routine use and may inspire further development of customized tools for challenging sample types.
我们展示了一种紧凑的3D打印设备,该设备旨在便于将半固体或高粘性样品高效装入与低温固态核磁共振探头兼容的3.2毫米转子中。该工具能够在标准实验室条件下通过离心进行样品加载,显著提高装填的可重复性并将样品损失降至最低。与先前报道的传统转子设计不同,该设备针对布鲁克CPMAS低温探头中使用的90微升转子的扩大体积和几何约束进行了优化。还介绍了一种配套的卸载工具,用于回收样品或实现转子的重复使用。这两种工具都与标准台式离心机兼容,并且完全可定制。它们的应用改善了对可用性有限或流变特性具有挑战性的生物或材料样品的处理。提供了开放获取的3D设计文件,以支持广泛采用并便于未来适配其他转子尺寸或样品形式。这些设备代表了一种可扩展的常规使用解决方案,并可能激发针对具有挑战性的样品类型定制工具的进一步开发。