Recent development in optical chemical sensors coupling with flow injection analysis

被引:25
作者
Bosch Ojeda, Catalina [1 ]
Sanchez Rojas, Fuensanta [1 ]
机构
[1] Univ Malaga, Fac Sci, Dept Analyt Chem, E-29071 Malaga, Spain
关键词
optical chemical sensors; flow injection analysis; applications;
D O I
10.3390/s6101245
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Optical techniques for chemical analysis are well established and sensors based on these techniques are now attracting considerable attention because of their importance in applications such as environmental monitoring, biomedical sensing, and industrial process control. On the other hand, flow injection analysis (FIA) is advisable for the rapid analysis of microliter volume samples and can be interfaced directly to the chemical process. The FIA has become a widespread automatic analytical method for more reasons; mainly due to the simplicity and low cost of the setups, their versatility, and ease of assembling. In this paper, an overview of flow injection determinations by using optical chemical sensors is provided, and instrumentation, sensor design, and applications are discussed. This work summarizes the most relevant manuscripts from 1980 to date referred to analysis using optical chemical sensors in FIA.
引用
收藏
页码:1245 / 1307
页数:63
相关论文
共 213 条
[1]   Recent developments and applications of chemiluminescence sensors [J].
Aboul-Enein, HY ;
Stefan, RI ;
van Staden, JF ;
Zhang, XR ;
Garcia-Campana, AM ;
Baeyens, WRG .
CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY, 2000, 30 (04) :271-289
[2]   Chemiluminescence-based (bio) sensors - An overview [J].
Aboul-Enein, HY ;
Stefan, RI ;
van Staden, JF .
CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY, 1999, 29 (04) :323-331
[3]   AUTOMATIC CONTINUOUS-FLOW DETERMINATION OF PARAQUAT AT THE SUBNANOGRAM PER MILLILITER LEVEL [J].
AGUDO, M ;
RIOS, A ;
VALCARCEL, M .
ANALYTICA CHIMICA ACTA, 1993, 281 (01) :103-109
[4]   Room temperature phosphorescence optosensor for anthracyclines [J].
Alava-Moreno, F ;
Valencia-González, MJ ;
Díaz-García, ME .
ANALYST, 1998, 123 (01) :151-154
[5]   ROOM-TEMPERATURE PHOSPHORESCENCE OPTOSENSOR FOR TETRACYCLINES [J].
ALAVAMORENO, F ;
DIAZGARCIA, ME ;
SANZMEDEL, A .
ANALYTICA CHIMICA ACTA, 1993, 281 (03) :637-644
[6]   A COMPARATIVE-STUDY OF 2 DIFFERENT APPROACHES FOR ACTIVE OPTICAL SENSING OF POTASSIUM WITH A CHROMOIONOPHORE [J].
ALAVAMORENO, F ;
PEREIROGARCIA, R ;
DIAZGARCIA, ME ;
SANZMEDEL, A .
SENSORS AND ACTUATORS B-CHEMICAL, 1993, 11 (1-3) :413-419
[7]   A continuous flow system combined with a sensing fluorimetric transductor for the determination of β-naphthol [J].
Algar, SO ;
Martos, NR ;
Díaz, AM .
MICROCHEMICAL JOURNAL, 2002, 73 (03) :279-285
[8]   Automatic determination of cobalt at the submicrogram per millilitre level using a flowthrough spectrophotometric sensor [J].
Alonso, EV ;
Pavon, JMC ;
Rios, A ;
Valcarcel, M .
TALANTA, 1996, 43 (11) :1941-1947
[9]   Development of an optical chemical sensor based on 2-(5-bromo-2-pyridylazo)-5-(diethylamino)phenol in Nafion for determination of nickel ion [J].
Amini, MK ;
Momeni-Isfahani, T ;
Khorasani, JH ;
Pourhossein, M .
TALANTA, 2004, 63 (03) :713-720
[10]   Continuous flow-through solid phase spectrophotometric determination of trace amounts of zinc [J].
Ayora-Cañada, MJ ;
Pascual-Reguera, MI ;
Molina-Díaz, A .
ANALYTICA CHIMICA ACTA, 1998, 375 (1-2) :71-80