Investigating the influence of the sulfur oxidation state on solid state conformation

Typeset version

 

TY  - JOUR
  - Daly, CA,Eccles, KS,Bateman, LM,Boyle, NMO,Lawrence, SE,Maguire, AR
  - 2012
  - January
  - Crystengcomm
  - Investigating the influence of the sulfur oxidation state on solid state conformation
  - Validated
  - ()
  - CRYSTAL-STRUCTURES DIPHENYLACETYLENES POLYMORPHISM IMPACT
  - 14
  - 7848
  - 7850
  - Design, synthesis and structural characterization of a series of diphenylacetylene derivatives bearing organosulfur, amide and amine moieties has been achieved in which the molecular conformation is controlled through variation of the hydrogen bond properties on alteration of the oxidation level of sulfur.
  - DOI 10.1039/c2ce26298c
DA  - 2012/01
ER  - 
@article{V190495861,
   = {Daly,  CA and Eccles,  KS and Bateman,  LM and Boyle,  NMO and Lawrence,  SE and Maguire,  AR },
   = {2012},
   = {January},
   = {Crystengcomm},
   = {Investigating the influence of the sulfur oxidation state on solid state conformation},
   = {Validated},
   = {()},
   = {CRYSTAL-STRUCTURES DIPHENYLACETYLENES POLYMORPHISM IMPACT},
   = {14},
  pages = {7848--7850},
   = {{Design, synthesis and structural characterization of a series of diphenylacetylene derivatives bearing organosulfur, amide and amine moieties has been achieved in which the molecular conformation is controlled through variation of the hydrogen bond properties on alteration of the oxidation level of sulfur.}},
   = {DOI 10.1039/c2ce26298c},
  source = {IRIS}
}
AUTHORSDaly, CA,Eccles, KS,Bateman, LM,Boyle, NMO,Lawrence, SE,Maguire, AR
YEAR2012
MONTHJanuary
JOURNAL_CODECrystengcomm
TITLEInvestigating the influence of the sulfur oxidation state on solid state conformation
STATUSValidated
TIMES_CITED()
SEARCH_KEYWORDCRYSTAL-STRUCTURES DIPHENYLACETYLENES POLYMORPHISM IMPACT
VOLUME14
ISSUE
START_PAGE7848
END_PAGE7850
ABSTRACTDesign, synthesis and structural characterization of a series of diphenylacetylene derivatives bearing organosulfur, amide and amine moieties has been achieved in which the molecular conformation is controlled through variation of the hydrogen bond properties on alteration of the oxidation level of sulfur.
PUBLISHER_LOCATION
ISBN_ISSN
EDITION
URL
DOI_LINKDOI 10.1039/c2ce26298c
FUNDING_BODY
GRANT_DETAILS