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德國波鴻大學(xué)全職博士位置 (稅后2200歐/月,另包保險(xiǎn)以及養(yǎng)老金)催化劑合成/表征
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博士課題大概4年時(shí)間,工資基本和德國博后工資一致 (稅后約2200歐元),包含保險(xiǎn)與養(yǎng)老金 。 此課題有2個(gè)博士生位置,一個(gè)學(xué)生做鋰電池催化劑,另一個(gè)學(xué)生做氧化物(pervoskite/spinel oxides)并對其表征。 導(dǎo)師是prof. tong li,在波鴻大學(xué)2017年成立原子尺度表征課題組,主要對納米催化顆粒表征和高性能工程材料表征,主要表征儀器是三維原子探針和球差電鏡。如果感興趣這個(gè)博士位置,請?jiān)?020年9月10日前發(fā)moativation letter, 簡歷,成績單畢業(yè)證,語言成績單合并成一個(gè)pdf發(fā)至rubacjobs.online@gmail.com (請僅發(fā)此郵箱) 關(guān)于英語要求,雅思個(gè)門成績在6.5以上。 職位1 原始招聘信息可查閱: https://www.stellenwerk-bochum.d ... o-2020-07-07-316423 the ruhr-universität bochum is one of the leading research universities. the university draws its strengths from both the diversity and the proximity of scientific and engineering disciplines on a single, coherent campus. this highly dynamic setting enables students and researchers to work across traditional boundaries of academic subjects and faculties. oxide nanoparticles have attracted increasing interest in catalyzing heterogeneous solid-liquid reactions in the applications of lithium ion batteries of water splitting. however, the fundamental insights into the interplay of reactivity, structure and composition of oxides are far less advanced. this knowledge gap prevents a rational design and application of metal oxides as heterogeneous oxidation catalysts in new sustainable liquid-phase processes. in the proposed project, the successful candidate (m/f/d) will synthesis oxide nanoparticles for lithium ion batteries and characterize these nanoparticles by a combination of state-of-the-art microscopy such as atom probe tomography and aberration-corrected transmission electron microscopy. the three-dimensional surface and internal structure and chemistry of catalyst nanoparticles will be revealed, with single atom sensitivity, before and after service. this atomic-scale information will provide a rational guide to nano-engineering catalysts in order to develop cost-effective and high efficiency sustainable energy sources. the successful candidate (m/f/d) will be working in the new research center for interface-dominated high-performance materials (zgh) at ruhr university bochum, which houses a large and comprehensive suite of equipment dedicated to nanostructure analysis; the center is among the best facilities of its kind in the world. he (m/f/d) will have access to world-class set of laboratories (e.g. glove boxes) and more than 10 major microscopy platforms, including the state-of-the-art atom probe, aberration-corrected tem and focused ion beam etc. the load of teaching will be calculated according to §3 of lehrverpflichtungsverordnung (state of north rhine-westphalia). travel expenses for interviews cannot be refunded. at ruhr-universität bochum, we wish to promote careers of women in areas in which they have been underrepresented, and we would therefore like to encourage female candidates to send us their applications. applications by suitable candidates with severe disabilities and other applicants with equal legal status are likewise most welcome. the candidate (m/f/d) must have: a) an excellent master degree in materials science, inorganic chemistry, nanoparticle synthesis, or electrochemistry b) experiences in synthesis of oxide nanoparticles for lithium ion batteries or oxide nanoparticles (e.g. perovskites/spinel) for water electrolysis c) can independently conduct potentiostat measurements including cyclic voltammetry, electrochemical impedance spectroscopy, chronopotentiomery, chronoamperometry etc d) a high level of spoken and written english e) can work both independently and as part of an interdisciplinary team f) ability to plan and organize the phd project effectively g) can work in multicultural environment h) self-motivated and eager to learn the candidate (m/f/d) may have: a) experiences in x-ray photoelectron spectroscopy data 職位2 原始招聘信息可查閱: https://www.stellenwerk-bochum.d ... o-2020-07-07-316421 the ruhr-universität bochum is one of the leading research universities. the university draws its strengths from both the diversity and the proximity of scientific and engineering disciplines on a single, coherent campus. this highly dynamic setting enables students and researchers to work across traditional boundaries of academic subjects and faculties. nanoparticles are one of the most important classes of catalyst materials. however, many of the nanoparticles suffer short lifespans or low energy conversion rates because of catalyst degradation or inactivity. this can be optimized through a good knowledge of activity, selectivity, and stability of the stability of the active sites of catalyst nanoparticles. the solutions to the problem require information about the atomic scale microstructure, but achieving this experimental information is a notorious challenge, especially for particles less than 100 nm in diameter. in this project, the successful phd candidate (m/f/d) will synthesis metallic nanoparticles (or oxide nanoparticles) used in low temperature fuel cells or for water electrolysis. she or he will employ a combination of state-of-the-art atom probe tomography and aberration-corrected transmission electron microscopy to study complex nanoparticle systems, revealing the three-dimensional surface and internal structure and chemistry of catalyst nanoparticles before and after service. this information will provide a rational guide to nano-engineering catalysts in order to develop cost-effective and high efficiency sustainable energy sources. the successful candidate (m/f/d) will be working in the new research center for interface-dominated high-performance materials (zgh) at ruhr university bochum, which houses a large and comprehensive suite of equipment dedicated to nanostructure analysis; the center is among the best facilities of its kind in the world. he or she will have access to world-class set of laboratories and more than 10 major microscopy platforms, including the state-of-the-art atom probe, aberration-corrected tem and focused ion beam etc. the load of teaching will be calculated according to §3 of lehrverpflichtungsverordnung (state of north rhine-westphalia). travel expenses for interviews cannot be refunded. at ruhr-universität bochum, we wish to promote careers of women in areas in which they have been underrepresented, and we would therefore like to encourage female candidates to send us their applications. applications by suitable candidates with severe disabilities and other applicants with equal legal status are likewise most welcome. the candidate (m/f/d) must have: a) an excellent master degree in materials science, inorganic chemistry, nanoparticle synthesis, or electrochemistry b) experience with synthesis of core-shell alloyed nanoparticles or oxide nanoparticles (e.g. perovskites) for water electrolysis c) can independently conduct potentiostat measurements including cyclic voltammetry, electrochemical impedance spectroscopy, chronopotentiomery, chronoamperometry etc d) a high level of spoken and written english e) can work both independently and as part of an interdisciplinary team f) ability to plan and organize the phd project effectively g) can work in multicultural environment h) self-motivated and eager to learn the candidate (m/f/d) may have: a) experiences in operating transmission electron microscopy b) experiences in analyzing x-ray photoelectron spectroscopy data |
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