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Job Description The successful candidate will be a synthetic chemist or materials scientist responsible for peptoid synthesis, purification and assembly. This researcher will also be involved in exploiting peptoid assemblies for applications (e.g. catalysis). Instruments that will be used for peptoid synthesis and purification include Aapptec Apex 396 solid-phase synthesizer, Waters SQD2 UPLC-MS system, semi-prep HPLC and lyophilizer. Techniques like atomic force microscope (AFM), TEM, SEM, fluorescence microscope, UV-vis, FT-IR and differential scanning calorimetry (DSC) will be used to characterize peptoid assemblies and to test their functions. Excellent oral and written communications skills are mandatory. Other duties will include publication of results in peer-reviewed journals, technical presentations at scientific conferences, and development of proposals for new research projects. The candidate must be able to independently design and carry out experiments as well as function productively as part of a multidisciplinary team. Minimum Qualifications Candidates must have received a PhD within the past five years (60 months) or within the next 8 months from an accredited college or university. Preferred Qualifications Ph.D. in chemistry, materials science, polymer science, bioengineering, or related field Solid background in organic synthesis, molecular assembly, and soft-matter characterization, Experience using AFM, TEM, SEM, dynamic light scattering, X-ray diffraction, and fluorescent microscope to characterize soft-matter self-assembly Excellent publication record Demonstrated capability to think and act independently Strong analytical skills Excellent written and oral communication skills Ability to collaborate Contact: Dr. Chun-Long Chen Chunlong.Chen@pnnl.gov Candidates in US will be perfered Selected Publications 1. Jin, H. B.; Jiao, F.; Daily, M. D.; Chen, Y. L.; Yan, F.; Ding, Y.-H.; Zhang, X.; Robertson, E. J.; Baer, M. D.; Chen, C. L.* Highly stable and self-repairing membrane-mimetic 2D nanomaterials assembled from lipid-like peptoids. Nat. Commun. 2016, 7, 12252. DOI: 10.1038/ncomms12252. (*Corresponding author) 2. Jiao, F.; Chen, Y. L.; Jin, H. B.; He, P. G.; Chen, C. L.*; DeYoreo, J. J.*, Self-repair and patterning of 2D membrane-like peptoid materials. Adv. Funct. Mater., 2016, in press (*Corresponding author) 3. Chen, C. L.*; Zuckermann, R. N.; DeYoreo, J. J., Surface-directed assembly of sequence-defined synthetic polymers into networks of hexagonally-patterned nanoribbons with controllable functionalities. ACS Nano, 2016, 10 (5), 5314¨C5320. (*Corresponding author) |
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