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6 protocols using milli q uv system

1

Purification and Characterization of Organic Compounds

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Hexanes (EMD Chemicals, 98.5%), ethyl acetate (EMD Chemicals, 99.5%), dichloromethane (EMD Chemicals, 99.5%), chloroform (EMD Chemicals, 99.5%), methanol (J.T. Baker, ≥99.9%), glacial acetic acid (EMD Chemicals, 99.5%), sulfuric acid (EMD Chemicals, 95%), anthrone (Sigma-Aldrich, >93%) hydrochloric acid (EMD Chemicals, 36.5–38%), sodium hydroxide (J.T. Baker, 98%), ethanol (Decon Laboratories, Inc., absolute), sodium phosphate monobasic monohydrate (EMD, 98%), sodium dibasic anhydrous phosphate (EMD Chemicals, 99%), 6-propionyl-2-dimethylaminonaphthalene (prodan, Molecular Probes), 6-dodecanoyl-2-dimethylaminonaphthalene (laurdan, Molecular Probes), toluene (EMD Chemicals, 99.5%), pyridine (Sigma-Aldrich, ≥99%), and (tridecafluoro-1,1,2,2-tetrahydrooctyl)triethoxysilane (Gelest) were used as received. Pyrene (Sigma-Aldrich, ≥99.0%) and benzophenone (BP, Alfa Aesar, 99%) were further purified by recrystallization from an ethanol (1–2 vol %) in water solution. Water was purified using a Milli-Q UV system to a resistivity of 18.2 MΩ (Millipore Corp.) with a total organic carbon content <6 ppb.
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2

Pedunculoside Purification and Characterization

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Pedunculoside (purity >99%.) was obtained from Anshi Pharmaceutical Co., Ltd (Zhongshan, China), β-CD, epichlorohydrin, ethylene glycol and other reagents were all of analytical purity and purchased from Shanghai Chemical Reagents Company. Doubly distilled and sterilized water was obtained from a Milli-Q UV system (Millipore).
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3

Hydroxyapatite Nanoparticle Synthesis

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Calcium nitrate (Ca(NO3)2∙4H2O, 99%, Sigma Aldrich), diammonium hydrogen phosphate (NH4)2HPO4, DAP, 98%, Sigma Aldrich), 2-propanol (99.9%, Carlo Erba Reagents) and ethanol (99.2%, Carlo Erba Reagents) were used as received. As HAP standard we use hydroxyapatite nanoparticles purchased from Sigma Aldrich. Highly pure water (having a resistivity of 18 MΩ.cm) produced by a Millipore Milli-Q UV system was used during all the experiments.
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4

Synthesis of Calcium Hydroxide Nanoparticles

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Metal granular calcium (Aldrich, 99%) and ethanol absolute (Sigma-Aldrich, 99.8%) were used for the synthesis of calcium hydroxide nanoparticles. Monodisperse spheres of amorphous SiO 2 (Levasil CS40-213 -Akzo Nobel Chemicals, 40 wt% in water, 0.2 wt% of Na 2 O as stabilizer, pH = 9) were used. Hydroxypropyl cellulose (Klucel®-G -Phase Restauro, technical grade, MW: 370,000 Da, moles of substitutions: 2-4.1) was used as additive for the preparation of CSH samples. Water was purified by a Millipore Milli-Q UV system (resistivity > 18 MΩ•cm). KBr (FT-IR grade, Merck) for FT-IR analysis was used as received.
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5

Synthesis of Nanoparticles from Common Reagents

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KBr (FTIR grade, Merck), NaCl (Technical grade, Sigma-Aldrich) were used as received. Ethanol absolute (99.8%, Fluka), 2-propanol (99.5%, Sigma-Aldrich), slaked lime (Ca(OH) 2 , technical grade, Banca della Calce) and metal granular calcium (99%, Aldrich) were used for the syntheses of nanoparticles. Water was purified by a Millipore Milli-Q UV system (resistivity >18 MΩ cm).
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6

Nanoparticle Synthesis Protocols

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Ethanol absolute (99.8%, Fluka), n-propanol (99.5%, Sigma-Aldrich), and metal granular calcium (99%, Aldrich) were used for nanoparticle syntheses. Highly pure water (resistivity > 18 MΩ cm, by a Millipore Milli-Q UV system) was used.
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