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Milli q direct 16 water purification system

Manufactured by Merck Group
Sourced in United States

The Milli-Q Direct 16 Water Purification System is a laboratory equipment product designed to produce high-quality, ultra-pure water. It utilizes a multi-stage purification process to remove impurities and contaminants from the input water source, resulting in water that meets strict standards for use in sensitive applications.

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2 protocols using milli q direct 16 water purification system

1

Photosensitizer-mediated Antimicrobial Protocol

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Chlorin e6 (Ce6) was purchased from Frontier Scientific Inc. (West Logan, UT, USA). 1,3-diphenylisobenzofuran (DPBF) was obtained from Sigma-Aldrich (St. Louis, MO, USA). Perfluorodecalin (FDC), lecithin, and cholesterol were purchased from Aladdin (Shanghai, China). Yeast extract, tryptone, agar, and crystal violet (CV) were purchased from Sinopharm Chemical Reagent Co., Ltd. (Shanghai, China). Distilled water (DW) used in the experiments was made from a Milli-Q Direct 16 Water Purification System (Millipore Corporation, Bedford, MA, USA) with resistivity higher than 18.2 MΩ cm−1. Other chemicals were supplied by Sinopharm Chemical Reagent Co., Ltd., China, and used as received. E. coli was purchased from Guangdong Microbial Culture Collection Center (Guangzhou, China) and A. baumannii was kindly supplied by Dr. Yishan Zheng at The Second Hospital of Nanjing.
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2

Characterization of Cs(I)-Imprinted Polymer

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All the electrochemical measurements were obtained with a three-electrode system using a PGSTAT204 electrochemical workstation (Switzerland). The concentration of metal ions in the solution was determined using a flame atomic absorption spectrometer (FAAS, TAS990, Universal, China) or an inductively coupled plasma mass spectrometer (ICP-MS, Thermo, USA). Fourier transform infrared spectra in KBr were recorded in the range of 400–4000 cm−1 using a FT-IR BXII spectrometer (Perkin-Elmer, USA). Energy dispersive spectrometry (EDS) (JSM-5610LV/INCA, United Oxford Instruments) operated at 20 kV was performed to confirm the existence of elements in the Cs(i)-IIP. Scanning Electron Microscope (SEM) images were taken using a JEOL-SEM (JSM-7001F, USA) operated at 15 kV. Transmission Electron Microscopy (TEM) images were taken using a Tecnai TF20 G2 FEG-TEM at 200 kV accelerating voltage with a standard single tilt holder. Ultra-pure water (18.25 MΩ cm) was used to prepare all the solutions, which was obtained from a Milli-Q Direct 16 water purification system (Millipore, Bedford, MA, USA).
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