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[½»Á÷] Ó¢¹úÂü³¹Ë¹ÌØ´óѧ¶Á²©2020Óлú»¯Ñ§·½Ïò È«½±+¶îÍâ²¹Öú ·ÇCSC

Ó¢¹úÂü³¹Ë¹ÌØ´óѧ¶Á²©2020Óлú»¯Ñ§·½Ïò È«½±+¶îÍâ²¹Öú=president¡¯s doctoral scholarship
Ó¢¹úÂü³¹Ë¹ÌØ´óѧ¶Á²©2020Óлú»¯Ñ§·½Ïò È«½±+¶îÍâ²¹Öú=president¡¯s doctoral scholarship

president`s doctoral scholarships at university of manchester ¨c organic synthesis

president¡¯s doctoral scholar award
the president¡¯s doctoral scholar (pds) award is the university¡¯s flagship funding initiative, and is strongly supported by the university's president and vice chancellor, professor dame nancy rothwell.

the scheme offers over 100 elite postgraduate research studentships per year and is open to students of all nationalities and across all research areas.

successful pds award candidates receive funding for their doctoral studies, as well as an additional ¡ê1,000 enhancement to their stipend. pds award-holders are students of the highest calibre, who have the commitment and desire to work on challenging research projects in world-leading research environments.

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prof michael greaney in the area of organic synthesis are invited to contact him (michael.greaney@manchester.ac.uk).
competitive candidates are expected to be msc graduates or outstanding bsc degree holders from the best chinese universities, having published at least one good journal paper.


½ÌÊÚÓÊÏ䣺michael.greaney@manchester.ac.uk
https://www.x-mol.com/university/faculty/2412
ÓÐÎÊÌâ¿ÉÀ´ÐÅѯÎÊchemdl@126.com
½ÌÊÚÓÊÏ䣺michael.greaney@manchester.ac.uk
ÓÐÎÊÌâ¿ÉÀ´ÐÅѯÎÊchemdl@126.com

the greaney laboratory works in organic synthesis in the areas of c-h activation, photoredox catalysis, and aryne chemistry. the proposed studentship will focus on earth-abundant transition metals, and invent ways of applying them to fundamental bond-forming reactions in chemistry. the greaney group have developed photoredox c-n and c-s bond forming reactions using visible light and copper and titania catalysts, as a sustainable alternative to established ruthenium-based methods in photochemistry. from this platform of preliminary results, the phd student will develop new ways of using iron photoredox catalysts that can realise fundamental bond formations such as amide, ester, and biaryl, with applications of sustainable catalysis to drug synthesis and small natural product exemplification.
the greaney laboratory offers a vibrant training environment with 8 active phd students and 4 pdras, forming a structure of expertise in the form of co-workers, chemicals and equipment, which are expected to create synergies for the rapid application of the novel catalytic methods discovered by the phd student in the course of their degree.
recent greaney group publications:
c-h activation: nat. commun., 2016, 7, [11873], angew. chem. int. ed., 2015, 54, 11677; j. am. chem. soc. 2015, 137, 1416; angew. chem. int. ed., 2014, 53, 1529; chem. commun. 2014, 13275; chem. commun. 2013, 6385; org. lett. 2013; 15, 1410; j. am. chem. soc. 2011, 133, 1209.
photoredox catalysis: org. lett. 2016, 18, 1646; angew. chem. int. ed. 2015, 54, 11481; chem. commun. 2015, 4383; org. lett. 2013, 15, 4398.
arynes: angew. chem. int. ed., 2016, 56, 2450; angew. chem. int. ed., 2015, 55, 2156; org. lett. 2014, 16, 2338, org. lett. 2014, 16, 2684; chem. commun. 2013, 7602; angew. chem. int. ed. 2012, 51, 1006.
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