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Pcl capa 6800

Manufactured by Perstorp
Sourced in Sweden

The PCL) CAPA 6800 is a laboratory equipment designed for precise and consistent analysis. It is a versatile instrument capable of performing a range of analytical tasks. The core function of the PCL) CAPA 6800 is to provide reliable and accurate data for research and development applications.

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5 protocols using pcl capa 6800

1

Biodegradable Polymer Composites with CNCs

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Poly(lactic acid) (PLA) Ingeo 2002D (Nature Works, Minnetonka, MN, USA) was used with a D-isomer content of 4.3%, Mw of 2.53 × 105 g·mol−1, melt flow rate of 6 g/10 min (190 °C/2.16 kg), and density of 1.24 g·cm−3. Poly(ε-caprolactone (PCL) CAPA 6800 (Perstorp, Malmö, Sweden) was used with a Mw of 8 × 104 g·mol−1, melt flow rate of 3 g/10 min (160 °C/2.16 kg), and density 1.145 g·cm−3. Dimethyl formamide (DMF) and dopamine were purchased from Sigma Aldrich (Prague, Czech Republic). BGB UltraTM cellulose nanocrystals (CNCs) in an 8.0% w/w aqueous suspension (BGB Inc., Saskatoon, Canada) were used.
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2

Synthesis of Polycaprolactone Composites

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Aluminium nitrate nonahydrate (Al(NO3)3), calcium nitrate tetrahydrate (Ca(NO3)2), sodium nitrate, sodium hydroxide, ethanol (p.a.), and tetrahydrofuran (THF) (p.a.) were supplied by Lach-Ner (Neratovice, Czech Republic) and used as received. Trihexyl(tetradecyl)phosphonium decanoate IL (IL-D, Figure 1) provided by IoLiTec (Heilbronn, Germany) was used without further purification.
εCL and tin(II) 2-ethylhexanoate (catalyst) were supplied by Sigma-Aldrich (Prague, Czech Republic). Monomer (εCL) was distilled under reduced pressure (over CaH2) and stored under inert (nitrogen) atmosphere. Commercial PCL Capa 6800 was kindly provided by Perstorp AB (Malmö, Sweden).
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3

Synthesis of MgAl-LDHs with Tannic Acid

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MgAl-LDHs was prepared via a modified urea method followed by hydrothermal treatment.6 (link) Tannic acid (TA, analytical purity), FeCl3·6H2O (analytical purity), dopamine hydrochloride (DA, purity of over 98%), tris(hydroxymethyl)aminomethane (Tris, purity of over 99.9%), polyvinylpyrrolidone (PVP, average molecular weight = 24 000, K23-27), AgNO3 (purity of over 98%), and NH3·H2O (purity of over 25%) were purchased from Shanghai Aladdin Bio-Chem Technology Co., Ltd. Commercial poly(ε-caprolactone) (PCL, Capa™ 6800, Mw ≥ 80 000) was supplied by Perstorp. All other reagents were of analytical purity and used without further purification.
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4

Biobased Polymer Composites with Almond Skin

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Poly(ε-caprolactone) (PCL, CAPA®6800) commercial grade (pellets, Mn = 80,000 Da, density = 1.1 g cm−3) was kindly supplied by Perstorp Holding AB (Sweden). Poly(lactic acid) (Ingeo™ biopolymer 2003D, Mw = 193,000 Da, Mn = 114,000 Da, specific gravity = 1.24 g cm−1) was obtained from NatureWorks LLC. Almond skins, used as filler, were kindly supplied by “Almendras Llopis” (Alicante, Spain) as an industrial byproduct and were ground with a high-speed rotor mill (Ultra Centrifugal Mill ZM 200, RETSCH, Haan, Germany) equipped with a 1-mm sieve size. The obtained AS fraction was then dried in a laboratory oven at 100 °C for 24 h. Dimensions of AS particles consisted of a width average of 43 ± 12 mm and a length average of 107 ± 31 mm [32 (link)]. GMA was provided by Sigma–Aldrich (Madison, WI, USA).
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5

Polycaprolactone Scaffold Preparation

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Polycaprolactone (PCL) Capa ® 6800 with mean molecular weight 80,000 Da, melting point of 58-60°C and melt flow index of 4.03-2.01 g/10 min was kindly supplied by Perstorp, UK.
Microcrystalline cellulose (MCC) was purchased from Sigma Aldrich. The following reagents were used for cell culture: DMEM low glucose (Sigma-Aldrich, UK), 100 units/ml penicillin-streptomycin (P/S, Gibco, UK), PBS (Life Technologies), fetal calf serum-columbia (First Direct, First Link, UK), trypsin-EDTA (0,5%) (Thermo Fisher Scientific).
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