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2011 - Europe Direct Iasi

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EUROINVENT <strong>2011</strong><br />

R.28.<br />

Scientific investigation by physico-chemical methods of<br />

Title<br />

archaeologic artefacts from pre- and proto-hystory in<br />

Carpatho-Dniester area<br />

Authors Dr. Viorica VASILACHE<br />

Institution Al.I.Cuza University of <strong>Iasi</strong><br />

Description<br />

The projects aims at development of new research in<br />

scientific investigation of the artifacts from prehistory<br />

and proto history of Carpatho-Dniester area (metal,<br />

ceramics) in order to establish the period and area of<br />

origin of materials and samples analyzed, thus beeing<br />

able to assess the economical and social changes over<br />

time. Priority objectives aims to use modern methods of<br />

scientific investigation, non-invasive, through an<br />

experimental protocol based on complementary<br />

relationships involving conjunction and co-assistance<br />

interdisciplinary systems between diverse analyzing<br />

systems in order to establish both the elemental<br />

composition and archaeometric characteristics, and also<br />

the conservation state, the elucidation of deterioration<br />

and degradation and also the elucidation of the<br />

detrerioration and degradation state of studied artifacts.<br />

Post-Doc Research Project POSDRU/89/1.5/S/61104, Cofinanced<br />

by EFS<br />

R.29.<br />

Title New imidazole based ionic liquids<br />

Costel Moldoveanu, Dan Astefanei, Dan Maftei,<br />

Authors<br />

Gheorghita Zbancioc, Ioana Stoian, Ionel Mangalagiu<br />

Institution Al. I. Cuza University, Faculty of Chemistry<br />

Imidazole and its derivatives compounds are well known<br />

biologically active and medicinally potent anticancer, anti-<br />

HIV, antibacterial and antifungal, cardiovascular diseases,<br />

etc. Moreover, imidazolium salts are potent room<br />

temperature ionic liquids of current great interest in<br />

Description<br />

industry.<br />

The aim of this work was to synthesize new azaheterocyle<br />

salts derived from 1,3-diazoles via conventional heating<br />

and MW irradiation. In order to obtain the desired 1,3diazole<br />

salts, we performed the alkylation of some fivemember<br />

rings N-heterocyles derived from imidazole and<br />

Innovative Researches<br />

154

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