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Resins for Solid Phase Peptide Synthesis - Core Resins

124. Simecek J, Zemek O, Hermann P, Wester HJ, Notni J. A monoreactive bifunctional triazacyclononane phosphinate chelator with high selectivity for gallium-68. 2012;7:1375-8

ChemMatrix® Resin – A major advance in solid phase peptide synthesis

Surface Plasmons have shown convincing evidence as critical tool for the development of advanced functional nanomaterials and devices. In the Polymer Nanohybrid Materials at Ewha Womans University, a comprehensive approach for the exploitation of plasmonic nanostructures has been systematically performed to seek their potential applications as key elements in diverse optoelectronic devices. We actively utilize complementary self-assembly processes to construct well-defined hybrid nanoscopic plasmonic materials suitable for target oriented applications. In this presentation, I’ll introduce our recent achievements focused on the effective coupling of plasmonics with active materials in photovoltaics, photodection, and optical biosensing.

Resins for Solid Phase Peptide Synthesis - AAPPTec

Dr. Sara Pellegrino is an Assistant Professor of Organic Chemistry at the University of Milano, Department of Pharmaceutical Sciences, Italy. She received her Ph. D in Medicinal Chemistry from the University of Milano in 2005. She has been visiting scientist at the University of Regensburg (Germany) in 2005-2006. Her research interests are the synthesis of peptides and peptide mimics, and their application in Material Science, Catalysis, Biochemistry and Medicinal Chemistry. She is author of more than 50 papers in peer-reviewed journals, of two patents filed, and of 60 communications at international conferences.

Dong Ha Kim received Ph.D. degrees in the Department of Fiber and Polymer Science at Seoul National University, Korea, in 2000. He carried out his postdoctoral researches at the University of Massachusetts at Amherst (from 2000 to 2003) with Prof. Thomas P. Russell and at the Max Planck Institute for Polymer Research (from 2003 to 2005) with Prof. Wolfgang Knoll. Then, he joined the Samsung Electronics Co. in the Memory Division of Semiconductor R & D Center as a senior scientist. In 2006 he assumed a faculty position in the Department of Chemistry and Nano Science at Ewha Womans University and currently he is a Full Professor and Ewha Fellow. His research interests include development of multi-functional hybrid nanostructures for applications in energy storage and conversion, environmental remediation, memory devices, display devices, and theranostics. He has authored 120 peer-reviewed SCI publications. He holds 29 Korean and 2 US patents. He is serving as editorial board member of Scientific Reports (Nature Publishing Groups) and advisory board member of Journal of Materials Chemistry A and Nanoscale (Royal Society of Chemistry).

MBHA Resin, peptide resins,peptide synthesis

O. Guellati, permanent researcher in LEREC laboratory in Algeria, has completed her PhD from Badji-Mokhtar University of Annaba 2013, Algeria on production of Carbon nanotube (CNTs) using CCVD technique and their functionalization and macronisation. She has published 15 papers in reputed journals. She is current reviewer in Nanoscale Research Letters. Actually, she is working on the production of transition metal hydroxides, oxides and their nanocomposites / nanohybrids with CNTs and graphene for energy storage and environment application. She is working in collaboration with ICPEES at ECPM, Strasbourg – France, IMS at University of Valencia – Spain and SARChI Chair in Carbon Technology and Materials at Pretoria University, South Africa.

The ordered porous anodic aluminum oxide (AAO) is one of the famous nano-templates usedas etching mask for pattern transfer and for synthesis of nanocomposite materials for wideapplications. Conventional AAO templates were synthesized using two-step potentiostaticmethod of direct current anodization (DCA) at low temperature (0-10°C) to avoid dissolutioneffect. In this talk, the synthesis and characteristics of AAO using conventionallow-temperature anodization and an effective method of room-temperature hybrid pulseanodization (HPA) are presented for the comparison. The HPA with normal-positive andsmall-negative voltages for AAO synthesis can be accomplished at relatively hightemperature of 15-25°C for enhancing AAO characteristics from both the cheap low-purity(99%) and costly high-purity (99.997%) aluminum foils. The pore distribution uniformity andcircularity of AAO by HPA is much better than DCA due to its effective cooling at hightemperature. The impurity effect on AAO characteristics is also discussed. HPA is differentfrom the traditional pulse-anodization with alternating both high and low positive potentialdifferences (/currents) or both one-positive and one-zero potential differences. HPA not onlymerits manufacturing convenience and cost reduction but also promotes pore distributionuniformity of AAO at severe conditions of low-purity Al foils and high temperature. Someapplication in humidity sensing, photoluminescence and SERS will be presented.

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Custom Peptide Synthesis, Peptide Synthesizer, Fmoc …

Dr. J.A. Navío is Professor of Inorganic Chemistry at the University of Seville (Spain), where he teaches in subjects in the area of Inorganic Chemistry. His research activities are carried out at the Institute of Materials Science which is a Mix Center between the the University of Seville and the CSIC. He is the leader of the research group called "Heterogeneous Photocatalysis: applications" and has about 180 papers published in indexed journals, with an index H = 40. His interest is focused on the Science of Materials with photocatalytic functionality, within the research line Materials for Energy and the Environment.

Solid-phase oligonucleotide synthesis - ATDBio

332. Ujula T, Salomaki S, Virsu P, Lankinen P, Makinen TJ, Autio A. . Synthesis, Ga-68 labeling and preliminary evaluation of DOTA peptide binding vascular adhesion protein-1: a potential PET imaging agent for diagnosing osteomyelitis. 2009;36:631-41

Peptide Synthesis Systems | ZINSSER ANALYTIC

Ge Wang received her Ph.D. in Chemistry from the Michigan Technological University in 2002. Currently she is a professor and Ph.D. supervisor in the School of Material Science and Engineering at the University of Science and Technology Beijing. In 2012, she became a special chair professor endowed by the Chang Jiang Scholars Program of the Ministry of Education. Her research interests focus on creating complex materials structures with nanoscale precision using chemical approaches, and studying the functionalities including catalytic, energy storage and energy saving properties etc.

SOPHAS Pep is an automatic system for peptide synthesis

Professor Roohollah Bagherzadeh’s research interests include Flexible Piezoelectric Power Harvesting materials, and High-Performance Biomaterials and the use of these in the development of Functional Fibrous Materials. A current focus involves the use of these tools and materials in developing Power harvesting and Nanogenerator from the molecular to functional clothing domains in order to harvest mechanical energy from environment and biological systems for powering a personal electronics. Roohollah has published more than 35 refereed publications; and co-authored several chapter books. Roohollah completed his PhD (2010) degrees at Amirkabir University of Technology (AUT), and was awarded a Research Scholar scholarship from Deakin University, Australia, in 2011. He was appointed as a Assistant Professor at the AUT in 2012.

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