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5 protocols using 3 4 ethylenedioxythiophene

1

Organic Synthesis Reagents Database

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Dichloromethane (CH2Cl2), chloroform (CHCl3, 99.94%), tetrahydrofuran (THF) (C4H8O, 99.94%) and ammonium hydroxide (NH4OH, 24.06%) were received from Lach-Ner s.r.o., Neratovice, Czech Republic. α-bromoisobutyryl bromide (C4H6Br2O, >98.0%), 3-thiopheneethanol (C6H8OS, 98.0%) and N,N,N′,N″,N″-pentamethyldiethylenetriamine (PMDETA) (C9H23N3, >99.0%) were recieved from Tokyo Chemical Industry, Tokyo, Japan. Nitromethane (CH3NO2, 98+%), copper(I) bromide (CuBr, 98%), dibutyltin dilaurate (DBTDL, [CH3(CH2)3]2Sn[O2C(CH2)10CH3], iron(III) chloride, anhydrous (FeCl3, 98%) and ethyl isocyanate (C3H5NO, 98%) were received from Alfa Aesar, Haverhill, MA, USA. Triethylamine (C6H15N, 99%), 3,4-ethylenedioxythiophene (EDOT, 99.0%) silica gel (SiO2) and 2-hydroxyethyl acrylate (C5H8O3, 97%) were received from Acros Organics, Geel, Belgium. Magnesium sulfate (MgSO4, 99.4%) was received from VWR Chemicals, Leuven, Belgium. Acetone (C3H6O, 98.0%) and ethanol (C2H5OH, 96.0%) were received from Gram-mol, Zagreb, Croatia. Methanol (CH3OH, 99.9%) was received from Carlo Erba Reagents, Val-de-Reuil, France and diethyl eter (C4H10O) was received from Macron Fine Chemicals, Radnor, PA, USA. All the solvents were used as received.
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2

Synthesis and Characterization of Thiophene-Based Materials

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All chemical reagents were used as received without any purification. 3-tiopheneethanol (97%), triethylamine (99%), 3,4-ethylenedioxythiophene (98%), silica gel, and nitromethane (99+%) were purchased from Acros Organics, Geel, Belgium. Methanol (MeOH, p.a.), dichloromethane (DCM, p.a.), ammonium hydroxide, and chloroform (CHCl3, p.a.) were purchased from Lach-Ner s.r.o., Neratovice, Czech Republic. Iron (III) chloride (FeCl3, 98%, anhydrous) was obtained from Alfa Aesar, Havernhill, MA, USA, and α-bromoisobutyril bromide (BiBB, 98%) from Tokyo Chemical Industry, Tokyo, Japan.
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3

Conductive Polymer Composite Synthesis

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Aniline (p.a. Chempur, Karlsruhe, Germany), sodiumpolystyrene sulfonate (Sigma Aldrich, Saint Louis, MO, USA) and 3,4-ethylenedioxythiophene (99%, Acros Organics, Geel, Belgium) were used as received. Sulfuric acid (p.a. 95%) and hydrochloric acid (p.a. 35%), used for electrolyte preparation, were purchased from POCH. Graphite foil (thickness 0.4 mm, 99.8%, Alfa Aesar, Haverhill, MA, USA) was used as the conductive substrate.
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4

Synthesis and Characterization of PEDOT:PSS

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Pyrrole (Py, MW 67.09g/mol) and dopant poly (sodium-p-styrenesulfonate) (PSS, MW 70kg/mol) was purchased from Acros-Organics. 3,4-Ethylenedioxythiophene (EDOT) was purchased from Alfa Aesar. N-type Si wafers coated with SiO2 were purchased from University Wafer Company. Stainless Steel wafer masks were designed in house and purchased after fabrication by PhotoEtch Company. All other materials and reagents were used as purchased.
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5

Electrochemical Biosensor Protocol

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All chemicals were of analytical grade and ultrapure Milli-Q water laboratory grade (conductivity b0.1 μS/cm) was used. The chemical reagents used included potassium hexacyanoferrate (III) (K 3 [Fe(CN) 6 ]) and potassium hexacyanoferrate (II) trihydrate (K 4 [Fe(CN) 6 ].3H 2 O), obtained from Riedel-de Häen; Phosphate buffered saline (PBS) tablets purchased from Sigma-Aldrich; 3,4-Ethylenedioxythiophene, 97% (EDOT), from Alfa Aesar; 4-Aminothiophenol, 96% (4-AMP), from Acros Organics; EriochromeBlack T (EBT), from Biochem; Interleukin-1β (IL-1β) (AA 117-269) with purity N95% in PBS pH 7.4 (concentration 1 mg/mL) from Antibodies-online, Germany. Myoglobin (Myo) and Immunoglobulin G (IgG) were purchased from Sigma-Aldrich; Glucose (Glu) from Fisher BioReagents and Urea from Fagron; sodium chloride (NaCl) from Panreac; potassium chloride (KCl) and calcium chloride (CaCl 2 ) from Merck; magnesium chloride hexa-hydrate (MgCl 2 .6H 2 O) from Riedel-de Häen was also used.
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