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Dive into the research topics where Teija Tirri is active.

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Featured researches published by Teija Tirri.


Polymers | 2017

Investigation on the Influence of Chain Extenders on the Performance of One-Component Moisture-Curable Polyurethane Adhesives

Chen Tan; Teija Tirri; Carl-Eric Wilén

In this work, a number of chain extended moisture-curable urethane prepolymers were synthesized in order to develop isocyanate terminated urethane prepolymer formulations that would simultaneously display both high adhesive strength and low viscosity. Proton nuclear magnetic resonance spectroscopy (1H-NMR), size exclusion chromatography (SEC), differential scanning calorimetry (DSC), and Brookfield viscometry were utilized for characterizing the prepared urethane prepolymers. In addition, the adhesion strength of the cured prepolymers was determined by tensile shear strength test according to the DIN EN (Deutsches Institut für Normung, the German Institute for Standardization) 1465 standard. Especially, the role of different types of linear (butanediol, pentanediol) and branched chain extenders (dipropyleneglycol (di-PPG), tripropyleneglycol (tri-PPG) and the influence of their dosage on the degree of microphase separation between hard segments (HS) and soft segments (SS) in urethane prepolymers were studied. Furthermore, the benefits of utilizing either a one-step versus a two-step polymerization process were investigated. The results revealed that the extent of phase separation of different urethane prepolymers was dependent on the extent of hydrogen bonding interactions which was extensively studied by attenuated total reflectance infrared spectroscopy (ATR-FTIR). The incorporation of branched chain extenders (di-PPG and tri-PPG) did not result in notable phase separation between hard segments and soft segments, while linear chain extenders (pentanediol and butanediol) readily promoted phase separation. The degree of phase separation was particularly pronounced for butanediol, and when the linear chain extender ratio was higher than or equal to 0.74. Compared with a two-stage process, one-stage process produced more randomly distributed polymer chains with highly dispersed hard segments. Thus, urethane prepolymers exhibiting strong adhesive strength with simultaneously low viscosity were successfully developed by systematic adjustment of structural parameters.


Polymers | 2016

Structure-Property Studies on a New Family of Halogen Free Flame Retardants Based on Sulfenamide and Related Structures

Teija Tirri; Melanie Aubert; Weronika Pawelec; Anton Holappa; Carl-Eric Wilén

A wide variety of molecules containing S–N or S–N–S cores were synthesized, and their flame retardant properties in polypropylene (PP), low density polyethylene (LDPE) and polystyrene (PS) were investigated. In addition, polymers or oligomers bearing the sulfenamide functionality (SN) were also synthesized. It was shown that this radical generator family based on sulfenamides is very versatile in terms of structural modifications, and the thermal decomposition range can be easily adjusted by changing the R groups attached to the core. The thermal stabilities of the different sulfenamides were examined by thermogravimetric analysis (TGA). Radicals generated by the homolytic cleavage of the S–N or S–N–S bonds at an elevated temperature can effectively interact with the intermediate products of polymer thermolysis and provide excellent flame retardant properties. The choice of most suitable SN-structure varies depending on the polymer type. For polypropylene DIN 4102-1 B2 and UL94 VTM-2 classifications were achieved with only 0.5 to 1 wt % of sulfenamide, and, in some cases, no flaming dripping was observed. Also for LDPE thin films, sulfenamides offered the DIN 4102-1 B2 rating at low dosage. In the case of polystyrene, the very stringent UL94 V-0 classification was even achieved at a loading of 5 wt % of sulfenamide.


Polymers | 2018

The Synthesis of Low-Viscosity Organotin-Free Moisture-Curable Silane-Terminated Poly(Urethane-Urea)s

Chen Tan; Viivi Luona; Teija Tirri; Carl-Eric Wilén

This work explores the possibility of synthesizing moisture-curable silane-terminated poly(urethane-urea)s (SPURs) of low viscosity. First, NCO-terminated urethane prepolymers were prepared, followed by silane end-capping. The impact of polyol molecular weight and the ratio of isocyanate to polyol (NCO/OH) on viscosity and the properties of SPUR were examined. As alternatives to the organotin catalysts traditionally used for the polyurethane synthesis and curing processes, bismuth carboxylate catalysts were evaluated. In addition, the effect of organofunctional groups in the aminosilane structure (R1–NH–R2–Si(OR3)3), i.e., R1 (alkyl, aryl or trimethoxysilyl-propyl), the spacer R2 (α or γ) and alkyl group R3 (methyl or ethyl), was examined. The chemical and physical structures of the SPUR were investigated by nuclear magnetic resonance spectroscopy (NMR), Fourier transform infrared spectroscopy (FT-IR) and the mechanical properties were evaluated by tensile tests. The results reveal that silane-terminated, moisture-curable polyurethanes can be successfully synthesized and cured with bismuth carboxylate catalysts. SPUR exhibiting low viscosity, with adequate tensile strength and elongation can be prepared using environmentally benign bismuth carboxylate catalyst having a high metal content of 19%–21%, by utilizing secondary aminosilane end-cappers and an optimal combination of the polyol molecular weight and NCO/OH ratio.


Polymer Degradation and Stability | 2012

Versatile bis(1-alkoxy-2,2,6,6-tetramethylpiperidin-4-yl)-diazenes (AZONORs) and related structures and their utilization as flame retardants in polypropylene, low density polyethylene and high-impact polystyrene

Melanie Aubert; Teija Tirri; Carl-Eric Wilén; Alexandre François-Heude; Rudolf Pfaendner; Holger Hoppe; Michael Roth


Polymer Degradation and Stability | 2012

Novel tetrapotassium azo diphosphonate (INAZO) as flame retardant for polyurethane adhesives

Teija Tirri; Melanie Aubert; Carl-Eric Wilén; Rudolf Pfaendner; Holger Hoppe


Polymer Degradation and Stability | 2014

Disulfides – Effective radical generators for flame retardancy of polypropylene

Weronika Pawelec; Anton Holappa; Teija Tirri; Melanie Aubert; Holger Hoppe; Rudolf Pfaendner; Carl-Eric Wilén


Journal of Applied Polymer Science | 2013

Flame retardant polyurethane nanocomposite: Study of clay dispersion and its synergistic effect with dolomite

Rafieh-Sadat Norouzian Amiri; Teija Tirri; Carl-Eric Wilén


International Journal of Adhesion and Adhesives | 2016

The effect of core–shell particle morphology on adhesive properties of poly(styrene-co-butyl acrylate)

Chen Tan; Teija Tirri; Carl-Eric Wilén


Journal of Applied Polymer Science | 2014

Preparation and characterization of bis-[1,3,5]triazinyl diazenes and their utilization as flame retardants in polypropylene films

Teija Tirri; Melanie Aubert; Weronika Pawelec; Carl-Eric Wilén; Rudolf Pfaendner; Holger Hoppe; Michael Roth; Jari Sinkkonen


Progress in Organic Coatings | 2015

Toward halogen-free flame resistant polyethylene extrusion coated paper facings

Weronika Pawelec; Teija Tirri; Melanie Aubert; Eva Häggblom; Tommi Lehikoinen; Rune Skåtar; Rudolf Pfaendner; Carl-Eric Wilén

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Holger Hoppe

Ciba Specialty Chemicals

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Chen Tan

Åbo Akademi University

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Michael Roth

Ciba Specialty Chemicals

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