分光光度法中的误差和避免误差的校准程序。

A G Reule
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引用次数: 0

摘要

分光光度法原理简单,但需要采取很多预防措施来避免错误。我们将讨论分光光度计的以下特性及其测试方法:光谱特性--波长精度、带宽、杂散光;光度线性;样品与仪器之间的相互作用--多重反射、偏振、发散、样品楔、样品倾斜、光路长度(折射率)、干扰。只有通过复杂的程序才能校准主仪器。使用这种主仪器可以校准标准,从而大大简化实际工作中所用仪器的性能检查。对于测试高质量的分光光度计,使用发射线和近中性吸收固体滤光片作为标准似乎更优越,而对于某些类型的常规仪器,使用吸收带和液体滤光片可能是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Errors in Spectrophotometry and Calibration Procedures to Avoid Them.

Errors in Spectrophotometry and Calibration Procedures to Avoid Them.

Errors in Spectrophotometry and Calibration Procedures to Avoid Them.

Errors in Spectrophotometry and Calibration Procedures to Avoid Them.

Based on simple principles, spectrophotometry nevertheless demands a lot of precautions to avoid errors. The following properties of spectrophotometers will be discussed together with methods to test them: Spectral properties-wavelength accuracy, bandwidth, stray light; photometric linearity; interactions between sample and instrument-multiple reflections, polarization, divergence, sample wedge, sample tilt, optical path length (refractive index), interferences. Calibration of master instruments is feasible only by complicated procedures. With such a master instrument standards may be calibrated which greatly simplify performance checks of instruments used for practical work. For testing high quality spectrophotometers the use of emission lines and nearly neutral absorbing solid filters as standards seems to be superior, for some kinds of routine instruments the use of absorption bands and liquid filters may be necessary.

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