Department of Materials Science and Engineering, University of California, Los Angeles, CA, 90095, USA.
John A. Paulson School of Engineering and Applied Sciences, Kavli Institute for Bionano Science and Technology, Harvard University, Cambridge, MA, 02138, USA.
Adv Mater. 2018 Nov;30(46):e1804916. doi: 10.1002/adma.201804916. Epub 2018 Sep 25.
Developing ultrasensitive chemical sensors with small scale and fast response through simple design and low-cost fabrication is highly desired but still challenging. Herein, a simple and universal sensing platform based on a hydrogel interferometer with femtomol-level sensitivity in detecting (bio)chemical molecules is demonstrated. A unique local concentrating effect (up to 10 folds) in the hydrogel induced by the strong analyte binding and large amount of ligands, combined with the signal amplification effect by optical interference, endows this platform with an ultrahigh sensitivity, specifically 10 m for copper ions and 1.0 × 10 mg mL for glycoprotein with 2-4 order-of-magnitude enhancement. The specific chemical reactions between selected ligands and target analytes provide high selectivity in detecting complex fluids. This universal principle with broad chemistry, simple physics, and modular design allows for high performance in detecting wide customer choices of analytes, including metal ions and proteins. The scale of the sensor can be down to micrometer size. The nature of the soft gel makes this platform transparent, flexible, stretchable, and compatible with a variety of substrates, showing high sensing stability and robustness after 200 cycles of bending or stretching. The outstanding sensing performance grants this platform great promise in broad practical applications.
通过简单的设计和低成本的制造来开发具有小尺寸和快速响应的超灵敏化学传感器是非常需要的,但仍然具有挑战性。在此,展示了一种基于水凝胶干涉仪的简单且通用的传感平台,该平台在检测(生物)化学分子方面具有飞摩尔级的灵敏度。水凝胶中强烈的分析物结合和大量配体引起的独特局部浓缩效应(高达 10 倍),结合光学干涉的信号放大效应,赋予了该平台超高的灵敏度,具体为铜离子为 10 m,糖蛋白为 1.0×10 mg mL,增强了 2-4 个数量级。选定的配体与目标分析物之间的特定化学反应提供了在检测复杂流体中的高选择性。这种具有广泛化学、简单物理和模块化设计的通用原理允许在检测广泛的客户选择的分析物方面具有高性能,包括金属离子和蛋白质。传感器的尺寸可以小至微米级。软凝胶的性质使该平台具有透明、灵活、可拉伸以及与各种基底兼容的特点,在弯曲或拉伸 200 次循环后仍保持高传感稳定性和鲁棒性。出色的传感性能使该平台在广泛的实际应用中具有很大的应用前景。