Satija Jitendra, Bharadwaj Reshma, Sai Vvr, Mukherji Soumyo
Department of Bioscience and Bioengineering, IIT Bombay, Mumbai, Maharashtra, India.
Nanotechnol Sci Appl. 2010 Dec 6;3:171-88. doi: 10.2147/NSA.S8981.
The localized surface plasmon resonance (LSPR) property of gold nanoparticles (GNP) has been exploited in a variety of optical sensor configurations including solution-based bioassays, paper-based colorimetric detection, surface-confined nanoparticle film/array-based sensing, etc. Amongst these, gold nanostructured films are of great interest because of their high stability, good reproducibility, robustness, and cost-effectiveness. The inherent optical characteristics of GNP, are attributed to parameters like size and shape (eg, nanospheres, nanorods, nanostars), eg, LSPR spectral location sensitivity to the local environment, composition (eg, gold-silver or silica-gold nanoshells), sensing volume, mesospacing, and multiplexing. These properties allow sensor tunability, enabling enhanced sensitivity and better performance of these biosensors. Ultrasensitive biosensor designs were realized using gold nanostructured films fabricated by bottom-up as well as top-down approaches. In this review, we describe the past, present, and future trends in the development of GNP-LSPR-based sensors, concentrating on both design (fabrication) and application. In the process, we have discussed various combinations of GNP size and shape, substrate, and application domains.
金纳米颗粒(GNP)的局域表面等离子体共振(LSPR)特性已被应用于各种光学传感器配置中,包括基于溶液的生物测定、基于纸张的比色检测、基于表面受限纳米颗粒薄膜/阵列的传感等。其中,金纳米结构薄膜因其高稳定性、良好的可重复性、坚固性和成本效益而备受关注。GNP的固有光学特性归因于尺寸和形状(如纳米球、纳米棒、纳米星)等参数,例如LSPR光谱位置对局部环境、组成(如金银或二氧化硅-金纳米壳)、传感体积、介观间距和复用的敏感性。这些特性使传感器具有可调性,从而提高了这些生物传感器的灵敏度和性能。通过自下而上和自上而下的方法制备的金纳米结构薄膜实现了超灵敏生物传感器设计。在这篇综述中,我们描述了基于GNP-LSPR的传感器发展的过去、现在和未来趋势,重点关注设计(制造)和应用。在此过程中,我们讨论了GNP尺寸和形状、基底以及应用领域的各种组合。