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Open Access research that is addressing youth & criminal justice...

Advancing our understanding of crime and criminal justice, including youth justice, is a key area of research enquiry by researchers based at the Scottish Centre for Crime & Justice (SCCJR) and the Centre for Youth & Criminal Justice (CYCJ), within the School of Social Work & Social Policy.

SCCJR seeks to advance this understanding through theoretical, empirical and applied research, working with communities and policy makers, while simulatneously fostering a national criminological research capacity. Specialisms include the role of violence, drugs and alcohol in crime and the criminal justice system. Meanwhile, CYCJ remains dedicated to supporting improvements in youth justice, contributing to better lives for individuals, families and communities. Research here focuses on improving youth justice practice, policy and research.

Explore some of the Open Access research from SCCJR and CYCJ. Or explore all of Strathclyde's Open Access research...

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Group by: Publication Date | Item type | No Grouping
Jump to: 2019 | 2018 | 2017 | 2014 | 2011 | 2006 | 2004
Number of items: 12.

2019

Dodds, Christopher A and Kennedy, Alan R and Thompson, Ross (2019) Taming copper(I) cyanate and selenocyanate with N-heterocyclic carbenes. European Journal of Inorganic Chemistry. ISSN 1434-1948 (In Press)

Dodds, Christopher A. and Kennedy, Alan R. and Spicer, Mark D. (2019) N-heterocyclic germylenes : structural characterisation of some heavy analogues of the ubiquitous N-heterocyclic carbenes. Heteroatom Chemistry, 2019. 9178371. ISSN 1042-7163

2018

Dodds, C. A. and Kennedy, A. R. (2018) Crystal structure of the [(1,3-dimesityl-1Himidazol- 3-ium-2-yl)methanolato]copper(II) chloride dimer : insertion of formaldehyde into a copper–carbene bond. Acta Crystallographica Section E: Structure Reports, E74. pp. 1369-1372. ISSN 1600-5368

2017

Dodds, Christopher A. and Hobday, Claire L. and Kennedy, Alan R. and McKellar, Scott C. and Smillie, Katy and Walls, Aiden (2017) Ag(I) bipyridyl coordination polymers containing functional anions. New Journal of Chemistry, 41 (4). pp. 1574-1581. ISSN 1144-0546

2014

Wallace, Dawn and Chalmers, Kirsten and Dodds, Christopher and Stepek, Iain and Armstrong, David and Berlouis, Leonard and Reglinski, John and Spicer, Mark (2014) The thermal stability of tris(methimazolyl)borates and their germanium complexes. European Journal of Inorganic Chemistry, 2014 (15). pp. 2569-2575. ISSN 1434-1948

Dodds, Christopher A. and Kennedy, Alan (2014) N-heterocyclic carbene complexes of copper(i) thiocyanate : synthesis and structural characterization. Zeitschrift fur Anorganische und Allgemeine Chemie, 640 (5). pp. 926-930. ISSN 0044-2313

2011

Dodds, Christopher A and Spicer, Mark D and Tuttle, Tell (2011) Tungsten(VI) N-heterocyclic carbene complexes : synthetic, structural, and computational study. Organometallics, 30 (22). 6262–6269. ISSN 0276-7333

2006

Dodds, C.A. and Reglinski, J. and Spicer, M.D. (2006) Lower main-group element complexes with a soft scorpionate ligand: The structural influence of stereochemically active lone pairs. Chemistry - A European Journal, 12 (3). pp. 931-939. ISSN 0947-6539

Reglinski, J. and Garner, M. and Dodds, C.A. and Spicer, M.D. (2006) Coinage metal complexes of a boron substituted soft scorpionate ligand. Inorganic Chemistry, 45. pp. 2733-2741.

2004

Dodds, C.A. and Lehmann, M.A. and Ojo, J.F. and Reglinski, J. and Spicer, M.D. (2004) Cobalt half-sandwich, sandwich, and mixed sandwich complexes with soft tripodal ligands. Inorganic Chemistry, 43 (16). pp. 4927-4934. ISSN 0020-1669

Dodds, C.A. and Kennedy, A.R. and Reglinski, J. and Spicer, M.D. (2004) Pushing the frontiers of hard and soft scorpionate chemistry. Inorganic Chemistry, 43 (2). pp. 394-395. ISSN 0020-1669

Dodds, C.A. and Jagoda, M. and Reglinski, J. and Spicer, M.D. (2004) Soft scorplonate complexes of the fourth and fifth period elements arsenic and tin. Polyhedron, 23 (2-3). pp. 445-450. ISSN 0277-5387

This list was generated on Thu Jun 4 16:43:33 2020 BST.