TNT Sensor: Stern-Volmer Analysis of Luminescence Quenching of Ruthenium Bipyridine

被引:14
|
作者
Siegel, Rachel [1 ]
Glazier, Samantha [1 ]
机构
[1] St Lawrence Univ, Canton, NY 13617 USA
关键词
Upper-Division Undergraduate; Physical Chemistry; Inorganic Chemistry; Analytical Chemistry; Interdisciplinary/Multidisciplinary; Problem Solving/Decision Making; Oxidation/Reduction; Kinetics; Fluorescence Spectroscopy; Coordination Compounds; SELECTIVE DETECTION; FLUORESCENCE; UNDERGRADUATE; EXPLOSIVES; ACID;
D O I
10.1021/acs.jchemed.0c01221
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
TNT is both toxic and explosive, and therefore, the detection of TNT represents an environmental concern and a security concern. Dogs are often used for detection, but other methods are needed. This laboratory investigates a ruthenium bipyridine GRu(bpy)(3)](2)(+)) luminescence-based trinitrotoluene (TNT) sensor. Students will synthesize [Ru(bpy)(3)](2+), investigate sensors, and consider possible mechanistic pathways of quenching. Students are unlikely to have analyzed luminescence quenching data previously, and using TNT shows how important the technique is for problems like national security, environmental contamination, and land mine deactivation. The content of the lab is ideal for upper-level laboratories, when students have the foundational coursework to appreciate the interdisciplinary nature of chemistry as the experiment integrates inorganic, analytical, and physical chemistry.
引用
收藏
页码:2643 / 2648
页数:6
相关论文
共 50 条
  • [1] Reverse Stern-Volmer behavior for luminescence quenching in carbon nanoparticles
    Cao, Li
    Anilkumar, Parambath
    Wang, Xin
    Liu, Jia-Hui
    Sahu, Sushant
    Meziani, Mohammed J.
    Myers, Ethan
    Sun, Ya-Ping
    CANADIAN JOURNAL OF CHEMISTRY, 2011, 89 (02) : 104 - 109
  • [2] SOFTWARE FOR SIMULATION OF LUMINESCENCE QUENCHING MECHANISM: THE STERN-VOLMER KINETIC MODEL
    Dias Junior, Lauro Camargo
    Marques Novo, Joao Batista
    QUIMICA NOVA, 2014, 37 (02): : 361 - 366
  • [3] NEGATIVE STERN-VOLMER DEVIATIONS IN QUENCHING OF URANYL LUMINESCENCE BY SILVER ION
    MERCANTONATOS, MD
    INORGANICA CHIMICA ACTA, 1977, 25 (02) : L87 - L89
  • [4] Chiral recognition probed by Stern-Volmer luminescence-quenching kinetics.
    Bolender, JP
    Meyers, A
    Cordaro, J
    Ries, RS
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2000, 219 : U323 - U323
  • [5] FLUORESCENCE QUENCHING STUDIES - ANALYSIS OF NONLINEAR STERN-VOLMER DATA
    LAWS, WR
    CONTINO, PB
    METHODS IN ENZYMOLOGY, 1992, 210 : 448 - 463
  • [6] STERN-VOLMER QUENCHING KINETICS FOR USE OF A DUALISTIC QUENCHER
    HASEGAWA, T
    MATSUHISA, A
    YOSHIOKA, M
    JOURNAL OF PHYSICAL ORGANIC CHEMISTRY, 1993, 6 (03) : 160 - 162
  • [7] Abnormal Behavior in Stern-Volmer Luminescence Quenching Measurements via Apparent Lifetime Methods
    Payne, Sarah J.
    Demas, J. N.
    DeGraff, B. A.
    APPLIED SPECTROSCOPY, 2009, 63 (04) : 437 - 441
  • [8] Rapid and accurate determination of Stern-Volmer quenching constants
    Goodpaster, JV
    McGuffin, VL
    APPLIED SPECTROSCOPY, 1999, 53 (08) : 1000 - 1008
  • [9] IMPROVED METHOD FOR DETERMINATION OF STERN-VOLMER QUENCHING CONSTANTS
    DESILETS, DJ
    KISSINGER, PT
    LYTLE, FE
    ANALYTICAL CHEMISTRY, 1987, 59 (08) : 1244 - 1246
  • [10] ANALYSIS OF FLUORESCENCE QUENCHING IN SOME ANTIOXIDANTS FROM NONLINEAR STERN-VOLMER PLOTS
    ZENG, HL
    DUROCHER, G
    JOURNAL OF LUMINESCENCE, 1995, 63 (1-2) : 75 - 84