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A high-precision ratiometric fluorosensor for pH: Implementing time-dependent non-linear calibration protocols for drift compensation

机译:用于pH的高精度比例式氟传感器:实现随时间变化的非线性校准协议以进行漂移补偿

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We present a versatile time-dependent non-linear calibration protocol for optical sensors, implemented on the pH sensitive ratiometric fluorophore 8-hydroxypyrene-1,3,6-trisulfonic acid (HPTS) immobilized in ethyl-cellulose. The calibration protocol individually compensated for the progressive drift of calibration parameters, whereby sensor precision and accuracy, as well as applicable lifetime were improved. A severely reduced photoacidity was observed for the immobilized fluorophore, for which excited state dynamics was characterized and benefited from during measurements. Due to the significantly reduced photoacidity of HPTS immobilized in the ethyl-cellulose sensing membrane, a dual excitation/dual emission (F1, ex/em: 405/440 nm and F2, ex/em: 465/510 nm) ratiometric (R_(F1,F2) = F1/F2) sensing scheme could be used to amplify sensor response. The signal to noise (S/N) ratio was enhanced by approx 400% utilizing the dual excitation/dual emission ratiometric sensing scheme, rather than the more commonly used protocol of dual excitation/single emission for HPTS fluorescence. Apparent pKa of the fluorophore ranged from 6.74 to 8.50, mainly determined by the immobilization procedure. The repeatability (IUPAC, pooled standard deviation) over three pH values (6.986, 7.702 and 7.828) was 0.0044 pH units for the optical sensor, compared to 0.0046 for the electrode used for standardization. Sensor analytical characteristics were thereby in principle limited by the performance of the standardization procedure.
机译:我们为光学传感器提供了一种通用的时间依赖性非线性校准协议,该协议对固定在乙基纤维素中的pH敏感比率荧光团8-羟基py-1,3,6-三磺酸(HPTS)实施。校准协议单独补偿了校准参数的渐进漂移,从而提高了传感器的精度和准确度以及适用的使用寿命。观察到固定化的荧光团的光酸度大大降低,其表征了激发态动力学并在测量过程中受益。由于固定在乙基纤维素传感膜上的HPTS的光酸度显着降低,因此采用双激发/双发射(F1,ex / em:405/440 nm和F2,ex / em:465/510 nm)比率计量(R_( F1,F2)= F1 / F2)感应方案可用于放大传感器响应。利用双重激发/双重发射比率式传感方案,而不是更普遍使用的HPTS荧光双重激发/单一发射方案,信噪比(S / N)提高了约400%。荧光团的表观pKa范围为6.74至8.50,主要由固定程序确定。在三个pH值(6.986、7.702和7.828)上,光学传感器的重复性(IUPAC,合并标准偏差)为0.0044 pH单位,而用于标准化的电极为0.0046。因此,原则上,传感器的分析特性受到标准化程序性能的限制。

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