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C16h36o4ti

Manufactured by Merck Group
Sourced in United States

C16H36O4Ti is a chemical compound used in various laboratory applications. It is a colorless, viscous liquid that serves as a source of titanium in chemical reactions and analytical procedures. The compound's core function is to provide a controlled and stable form of titanium for use in laboratories, without further interpretation or extrapolation on its intended use.

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4 protocols using c16h36o4ti

1

Synthesis of Graphene Oxide Nanosheets

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All chemicals were of analytical grade and used with no further treatment. Graphite flakes (Alfa Aesar, 99.9%, -325 mesh), sodium nitrate (Fluka Chemika, 99%, NaNO3), potassium permanganate (Ajax FineChem, 99.0%, KMnO4), sodium hydroxide (Analytical reagent, Ajax FineChem, NaOH), and copper(ii) nitrate (Sigma Aldrich, Cu(NO3)2·3H2O) were purchased and used as received. Sulfuric acid (RCI Labscan, 98%, concentrated H2SO4), hydrochloric acid (RCI Labscan, 37%, HCl), hydrogen peroxide (Merck, 30%, H2O2), ethanol (RCI Labscan, 99.9%, C2H5OH), titanium(iv) butoxide (reagent grade, Sigma Aldrich, C16H36O4Ti) were used as received. The CO2 gas (99.9% purity) was purchased from Lor Ching Tong Oxygen (Thailand).
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2

Synthesis of Titanium Oxide-Silver-Graphene Oxide Composite

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0.71 mL titanium (IV) butoxide (C16H36O4Ti, Sigma-Aldrich) was dissolved in 20
mL ethanol and mixed
with 10 mL DI water. The mixture was vigorously stirred while 1.57
mg silver nitrate (AgNO3, Poch), 2.73 mg trisodium citrate
(Na3C6H5O7·2H2O, Ajax Finechem), and 0.35 mg sodium borohydride (NaBH4, Sigma-Aldrich) were added. The GO suspension was prepared
by sonicating 15 mg GO in 10 mL DI water. The suspension was slowly
added to the mixture for a 10 min period. Then, the mixture was transferred
to a hydrothermal reactor and heated at 180 °C for 7 h. The composite
powder was obtained via vacuum filtration and dried at 105 °C
for 3 h.
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3

Functionalization of TiO2 Nanoparticles

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The titanium oxide (TiO2) was obtained from titanium butoxide (IV) (C16H36O4Ti, Sigma Aldrich, St. Louis, MO, USA) and a natural extract (international patent No.PCT/IB2020/061916). The functionalization of the material required poly(vinyl alcohol) (PVA) ((C4H6O2)n, Sigma Aldrich, St. Louis, MO, USA) poly(D,L-lactide-co-glycolide) (PLGA) (lactide:glycolide (75:25), Sigma Aldrich, St. Louis, MO, USA) and acetone ((CH3)2CO, Sigma Aldrich, St. Louis, MO, USA). The releases were made in phosphate-buffered saline (PBS).
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4

TiO2 Seed Precursor Synthesis

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A certain amount of TiO2 seed precursor was prepared. A total volume of 1.0 mL concentrated HCl (AR, ∼30% aq., Sigma Aldrich) was mixed with 25.0 mL of isopropanol (AR 99%, Sigma Aldrich) for rotating at 1000 rpm for 30 min in room temperature. Varied amounts of tetra-n-butyl titanate (C16H36O4Ti, 99%, Sigma Aldrich) were added slowly to the mixture under rotation. The solution was then stored in the reagent refrigerator for later use.
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