Search results for "PIP"
showing 10 items of 1156 documents
CCDC 1046555: Experimental Crystal Structure Determination
2015
Related Article: Agris Be̅rziņš , Edgars Skarbulis , and Andris Actiņš|2015|Cryst.Growth Des.|15|2337|doi:10.1021/acs.cgd.5b00138
CCDC 1483077: Experimental Crystal Structure Determination
2017
Related Article: Vittorio Pace, Wolfgang Holzer, Guangrong Meng, Shicheng Shi, Roger Lalancette, Roman Szostak, Michal Szostak|2016|Chem.-Eur.J.|22|14494|doi:10.1002/chem.201603543
Synthesis, Stability and Relaxivity of TEEPO-Met: An Organic Radical as a Potential Tumour Targeting Contrast Agent for Magnetic Resonance Imaging
2018
Cancer is a widespread and life-threatening disease and its early-stage diagnosis is vital. One of the most effective, non-invasive tools in medical diagnostics is magnetic resonance imaging (MRI) with the aid of contrast agents. Contrast agents that are currently in clinical use contain metals, causing some restrictions in their use. Also, these contrast agents are mainly non-specific without any tissue targeting capabilities. Subsequently, the interest has notably increased in the research of organic, metal-free contrast agents. This study presents a new, stable organic radical, TEEPO-Met, where a radical moiety 2,2,6,6-tetraethylpiperidinoxide (TEEPO) is attached to an amino acid, methio…
ChemInform Abstract: Recyclable Catalyst Reservoir: Oxidation of Alcohols Mediated by Noncovalently Supported Bis(imidazolium)-Tagged 2,2,6,6-Tetrame…
2014
CCDC 1569164: Experimental Crystal Structure Determination
2017
Related Article: Toms Rekis, Simone d’Agostino, Dario Braga, Fabrizia Grepioni|2017|Cryst.Growth Des.|17|6477|doi:10.1021/acs.cgd.7b01146
CCDC 1569165: Experimental Crystal Structure Determination
2017
Related Article: Toms Rekis, Simone d’Agostino, Dario Braga, Fabrizia Grepioni|2017|Cryst.Growth Des.|17|6477|doi:10.1021/acs.cgd.7b01146
CCDC 1569162: Experimental Crystal Structure Determination
2017
Related Article: Toms Rekis, Simone d’Agostino, Dario Braga, Fabrizia Grepioni|2017|Cryst.Growth Des.|17|6477|doi:10.1021/acs.cgd.7b01146
Diastereoselective synthesis of 6-functionalized 4-aryl-1,3-oxazinan-2-ones and their application in the synthesis of 3-aryl-1,3-aminoalcohols and 6-…
2010
Abstract Halocyclocarbamation of benzyl N -(1-phenyl-3-butenyl)carbamates afforded 6-functionalized 4-aryl-1,3-oxazinan-2-ones with moderate to excellent diastereoselectivity depending on the N -substituent. Importantly, in contrast to reported cyclocarbamations of homoallylic carbamates, which are generally trans -diastereoselective, cyclization of N -unsubstituted Cbz-protected homoallylamines led to cis -1,3-oxazinan-2-ones, predominantly. The use of N -benzylated and in situ prepared N -silylated derivatives resulted however in trans -selectivity. Transition states are proposed to explain the stereochemical influence of the N -substituent on the cyclocarbamations. The functionalized 1,3…
CCDC 1846705: Experimental Crystal Structure Determination
2018
Related Article: R. Siddiqui, U. Iqbal, Z.S. Saify, S. Akhter, S. Yousuf|2018|Acta Crystallogr.,Sect.E:Cryst.Commun.|74|931|doi:10.1107/S2056989018008125
3D production pipeline in game development
2012
3D-tuotanto on merkittävä osa esimerkiksi peli- ja elokuvateollisuutta, jotka ovat itsessään suuria teollisuudenaloja. Näillä aloilla työprosesseja voidaan kuvata tuotantolinjastoina. 3D-tuotantolinjastot rakentuvat sillä työskentelevistä tekijöistä, näiden työnkuluista ja tässä työssä käytettävistä työkaluista. Tuotantolinjastoillaon tehostettu ja järkeistetty toimintaa. Tämän tutkielman tavoitteena on selvittää 3D-tuotantolinjojen merkitys pelikehitykselle ja tarkastella siihen kuuluvaa tuotantoprosessia. Asiaa tarkastellaan tässä tutkielmassa tekemällä katsaus alan kirjallisuuteen sekä kuvaamalla yksinkertainen malli tuotantolinjastoille. 3D production has grown to be major part of the d…