Chemistry Reference
In-Depth Information
60. Reppy MA, Pindzola BA, Hussey SL (2008) Preparation of polydiacetylene coatings. US
Patent Application 20,080,171,191
61. Reppy MA, Saller CF (2003) Method for evaluating drug candidates. US Patent
20,040,023,303
62. Kolusheva S, Wachtel E, Jelinek R (2003) Biomimetic lipid/polymer colorimetric mem-
branes: molecular and cooperative properties. J Lipid Res 44:65-71
63. Lakowicz JR (2006) Mechanisms and dynamics of fluorescence quenching, Chapter 9. In:
Principles of fluorescence spectroscopy, 3rd edn. Springer, New York
64. Lakowicz JR (2006) Quenching of fluorescence, Chapter 8. In: Principles of fluorescence
spectroscopy, 3rd edn. Springer, New York
65. Rose A, Lugmair CG, Swager TM (2001) Excited-state lifetime modulation in triphenylene-
based conjugated polymers. J Am Chem Soc 123:11298-11299
66. Zhou Q, Swager TM (1995) Fluorescent chemosensors based on energy migration in
conjugated polymers: the molecular wire approach to increased sensitivity. J Am Chem
Soc 117:12593-12602
67. Moon JH, Deans R, Kruegar E, Hancock LF (2003) Capture and detection of a quencher
labeled oligonucleotide by poly(phenylene ethylene) particles. Chem Commun 1:104-105
68. Yang J-S, Swager TM (1998) Fluorescent porous polymer films as TNT chemosensors:
electronic and structural effects. J Am Chem Soc 120:11864-11873
69. Yang J-S, Swager TM (1998) Porous shape persistent fluorescent polymer films: an approach
to TNT sensory materials. J Am Chem Soc 120:5321-5322
70. Rose A, Zhu Z, Madigan CF, Swager TM, Bulovi ´ V (2005) Sensitivity gains in chemosen-
sing by lasing action in organic polymers. Nature 434:876-879
71. Xu Q, An L, Wang S (2008) Design and synthesis of a new conjugated polyelectrolyte as a
reversible pH sensor. Macromol Rapid Commun 29:390-395
72. Xue C, Cai F, Liu H (2008) Ultrasensitive fluorescent responses of water-soluble, zwitter-
ionic, boronic acid-bearing, regioregular head-to-tail polythiophene to biological species.
Chem Eur J 14:1648-1653
73. Murphy CB, Zhang Y, Troxler T, Ferry V, Martin JJ, Jones WE Jr (2004) Probing F¨rster
and Dexter energy-transfer mechanisms in fluorescent conjugated polymer chemosensors.
J Phys Chem B 108:1537-1543
74. Kim J, McQuade DT, McHugh SK, Swager TM (2000) Ion-specific aggregation in conju-
gated polymers: highly sensitive and selective fluorescent ion chemosensors. Angew Chem
Int Ed 39:3868-3872
75. Kim T-H, Swager TM (2003) A fluorescent self-amplifying wavelength-responsive sensory
polymer for fluoride ions. Angew Chem Int Ed 42:4803-4806
76. Qu Y, Hua J, Yiang Y, Tian H (2009) Novel side-chain naphthalimide polyphenylacetylene
as a ratiometric fluorescent chemosensor for fluoride ion. J Polym Sci A Polym Chem
47:1544-1552
77. Wang B, Wasielewski MR (1997) Design and synthesis of metal ion-recognition-induced
conjugated polymers: an approach to metal
ion sensory materials. J Am Chem Soc
119:12-21
78. Liu X, Zhou X, Shu X, Zhu J (2009) A polymer-based ultrasensitive metal ion sensor.
Macromolecules 42:7634-7637
79. Zhang Y, Murphy CB, Jones WE Jr (2002) Poly[p-(phenyleneethynylene)-alt-(thienyle-
neethynylene)] polymers with oligopyridine pendant groups: highly sensitive chemosensors
for transition metal ions. Macromolecules 35:630-636
80. Liu B, Yu W-L, Pei J, Liu S-Y, Lai Y-H, Huang W (2001) Design and synthesis of bipyridyl-
containing conjugated polymers: effects of polymer rigidity on metal ion sensing. Macro-
molecules 34:7932-7940
81. B´ra-Ab´rem M, Ho H-A, Leclerc M (2004) Functional polythiophenes as optical chemo-
and biosensors. Tetrahedron 60:11169-11173
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