Literature DB >> 18459786

Chiral inversion of gold nanoparticles.

Cyrille Gautier1, Thomas Bürgi.   

Abstract

The thiolate-for-thiolate ligand exchange was performed on well-defined gold nanoparticles under an inert atmosphere without any modification of the core size. This reaction is faster than the well-known core etching. Surprisingly, if a chiral thiol is exchanged for its opposite enantiomer, the optical activity in the metal-based electronic transitions is reversed although the form of the CD spectra remains largely unchanged. The extent of inversion corresponds to the overall ee of the chiral ligand in the system. This shows that the chiral arrangement of metal atoms in the metal particle (surface) can not withstand the driving force imposed by the ligand of opposite absolute configuration. If the incoming thiol has a different structure, the electronic transitions in the metal core are slightly modified whereas the absorption onset remains unchanged. These results emphasize the influence of the thiols on the structure of the gold nanoparticles and give insight on the ligand exchange pathways.

Entities:  

Year:  2008        PMID: 18459786     DOI: 10.1021/ja800256r

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  10 in total

1.  Optical signatures of molecular dissymmetry: combining theory with experiments to address stereochemical puzzles.

Authors:  Parag Mukhopadhyay; Peter Wipf; David N Beratan
Journal:  Acc Chem Res       Date:  2009-06-16       Impact factor: 22.384

2.  Chiral Supraparticles for Controllable Nanomedicine.

Authors:  Jihyeon Yeom; Pedro P G Guimaraes; Hyo Min Ahn; Bo-Kyeong Jung; Quanyin Hu; Kevin McHugh; Michael J Mitchell; Chae-Ok Yun; Robert Langer; Ana Jaklenec
Journal:  Adv Mater       Date:  2019-11-05       Impact factor: 30.849

3.  Luminescent Gold Nanoparticles with Size-Independent Emission.

Authors:  Jinbin Liu; Paul N Duchesne; Mengxiao Yu; Xingya Jiang; Xuhui Ning; Rodrigo D Vinluan; Peng Zhang; Jie Zheng
Journal:  Angew Chem Int Ed Engl       Date:  2016-06-27       Impact factor: 15.336

4.  Chirality transfer from gold nanocluster to adsorbate evidenced by vibrational circular dichroism.

Authors:  Igor Dolamic; Birte Varnholt; Thomas Bürgi
Journal:  Nat Commun       Date:  2015-05-11       Impact factor: 14.919

5.  Nanoscale chirality in metal and semiconductor nanoparticles.

Authors:  Jatish Kumar; K George Thomas; Luis M Liz-Marzán
Journal:  Chem Commun (Camb)       Date:  2016-10-18       Impact factor: 6.222

6.  Temperature dependent chiroptical response of sigmoidal gold clusters: probing the stability of chiral metal clusters.

Authors:  Ping Guo; Biao Yang; Li Zhang; Liang Zhao
Journal:  Chem Sci       Date:  2018-05-25       Impact factor: 9.825

7.  Green Synthesis of Gold and Silver Nanoparticles Using Leaf Extract of Capsicum chinense Plant.

Authors:  Diego Alberto Lomelí-Rosales; Adalberto Zamudio-Ojeda; Oscar Kevin Reyes-Maldonado; Morelia Eunice López-Reyes; Georgina Cristina Basulto-Padilla; Edgar José Lopez-Naranjo; Víctor Manuel Zuñiga-Mayo; Gilberto Velázquez-Juárez
Journal:  Molecules       Date:  2022-03-04       Impact factor: 4.411

8.  Unusual chirality transfer from silica to metallic nanoparticles with formation of distorted atomic array in crystal lattice structure.

Authors:  Seiji Tsunega; Toyokazu Tanabe; Ren-Hua Jin
Journal:  Nanoscale Adv       Date:  2018-10-10

9.  In vivo self-bio-imaging of tumors through in situ biosynthesized fluorescent gold nanoclusters.

Authors:  Jianling Wang; Gen Zhang; Qiwei Li; Hui Jiang; Chongyang Liu; Christian Amatore; Xuemei Wang
Journal:  Sci Rep       Date:  2013-01-29       Impact factor: 4.379

10.  Structurally similar triphenylphosphine-stabilized undecagolds, Au11(PPh3)7Cl3 and [Au11(PPh3)8Cl2]Cl, exhibit distinct ligand exchange pathways with glutathione.

Authors:  Lallie C McKenzie; Tatiana O Zaikova; James E Hutchison
Journal:  J Am Chem Soc       Date:  2014-09-15       Impact factor: 15.419

  10 in total

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