Department of Chemistry , Fudan University , 200433 Shanghai , People's Republic of China.
Anal Chem. 2018 Jun 19;90(12):7544-7551. doi: 10.1021/acs.analchem.8b01159. Epub 2018 Jun 7.
A fully reversible optical sensor for hydrogen peroxide with fast response is presented. The sensor was fabricated by in situ growing ultrasmall platinum nanoparticles (PtNPs) inside the pores of fibrous silica particles (KCC-1). The nanocomposite was then embedded into a hydrogel matrix and form a sensor layer, the immobilized PtNPs can catalytically convert hydrogen peroxide into molecular oxygen, which is measured via luminescent quenching based oxygen sensor underneath. Owing to the high porosity and permeability of KCC-1 and high local concentration of PtNPs, the sensor exhibits fast response (less than 1 min) and full reversibility. The measurement range of the sensor covers 1.0 μM to 10.0 mM, and a very small amount of sample is required during measurement (200 μL). Because of its high stability, excellent reversibility and selectivity, and extremely fast response, the sensor could fulfill all industry requirements for real-time measurement and fill market vacancy.
一种具有快速响应的完全可逆的过氧化氢光学传感器被提出。该传感器通过在纤维状硅粒子(KCC-1)的孔内原位生长超小的铂纳米粒子(PtNPs)来制备。然后,将纳米复合材料嵌入水凝胶基质中形成传感器层,固定的 PtNPs 可以催化将过氧化氢转化为分子氧,这可以通过下面的基于发光猝灭的氧传感器进行测量。由于 KCC-1 的高孔隙率和渗透性以及 PtNPs 的高局部浓度,传感器表现出快速的响应(不到 1 分钟)和完全的可逆性。传感器的测量范围涵盖 1.0 μM 至 10.0 mM,并且在测量过程中仅需要少量的样品(200 μL)。由于其高稳定性、优异的可逆性和选择性以及极快的响应速度,该传感器可以满足实时测量的所有行业要求,并填补市场空白。