Killner Mario Henrique M, Tosin Giancarlo, Carvalho André S, Firme Bernardes Diego, Colnago Luiz Alberto
Embrapa Instrumentação, Rua XV de Novembro 1452, São Carlos, SP, 13560-970, Brazil.
Universidade Estadual de Londrina, Pr 445-km 380, Londrina, PR, 86057-970, Brazil.
Sci Rep. 2017 Oct 4;7(1):12686. doi: 10.1038/s41598-017-12854-x.
Unilateral nuclear magnetic resonance (UNMR) spectrometers have been applied in a variety of fields such as petrochemistry, materials science, and process control . In UNMR measurements the sample is placed outside of the UNMR sensor and the signal intensity is reduced almost exponentially as the sample-to-sensor distances increases. To expand the detection limits of remote UNMR sensors, wireless inductive coupling was proposed and tested. This strategy was proved to reduce signal attenuation due to sample detachment from sensor, resulting in an increase in detection distance by one order of magnitude (i.e., from few millimeters to few centimeters). This novel approach broadens the potential applications of UNMR sensors and opens new opportunities in several areas, from chemical to biomedical applications.
单边核磁共振(UNMR)光谱仪已应用于石油化学、材料科学和过程控制等多个领域。在UNMR测量中,样品放置在UNMR传感器外部,随着样品与传感器距离的增加,信号强度几乎呈指数下降。为了扩展远程UNMR传感器的检测极限,人们提出并测试了无线感应耦合技术。事实证明,这种策略可减少因样品与传感器分离而导致的信号衰减,使检测距离增加一个数量级(即从几毫米增加到几厘米)。这种新颖的方法拓宽了UNMR传感器的潜在应用范围,并在从化学到生物医学应用的多个领域开辟了新机遇。