Back to Results
First PageMeta Content
Physical Chemistry Chemical Physics / Quantum dot / Chemistry / Physics / Technology / University of Melbourne / Emerging technologies / Bio21 Institute


Professor Paul Mulvaney Molecular Plasmonics: from Single Electrons to Quantum Catalysis and Optical Logic Gates Current Organisation: Administering Organisation: Primary research field:
Add to Reading List

Document Date: 2010-07-02 01:10:16


Open Document

File Size: 118,56 KB

Share Result on Facebook

Company

Advanced Functional Materials / J.Mater Chem / Langmuir / Small / NanoToday / PCCP / /

Event

Employment Change / Person Travel / /

Facility

Royal Australian Chemistry Institute / University of Melbourne / University of Melbourne’s Centre / University of Melbourne The University / Max-Planck Institute / The University of Melbourne / Bio21 Institute / /

/

IndustryTerm

chemical reactions / potential applications / optical computing / nanocrystal electronics / light using metal nanostructures / /

Organization

University of Melbourne / Chemistry and Bio21 Institute / Australian Chemistry Institute / Institute for Nuclear Research in Berlin / School of Chemistry / Max-Planck Institute / University of Melbourne’s Centre for Nanoscience and Technology / Executive Committee / Optical Logic Gates Current Organisation / Editorial Boards of Advanced Functional Materials / Quantum Catalysis and Optical Logic Gates Current Organisation / Colloid Chemistry Division / Australian Academy of Science / University of Melbourne Physical Chemistry / /

Person

Luigi Provasoli / Paul Mulvaney / Paul Mulvaney Molecular Plasmonics / Grimwade Prizes / /

/

Position

research scientist / Governor / Professor / Co-Director / Chair / member / /

PublishedMedium

Advanced Functional Materials / /

Technology

quantum dots / /

URL

www.arc.gov.au / /

SocialTag