Shell-by-shell synthesis of tin oxide hollow colloids with nanoarchitectured walls: cavity size tuning and functionalization.
Shell-by-shell synthesis of tin oxide hollow colloids with nanoarchitectured walls: cavity size tuning and functionalization. Research Abstract Details
Shell-by-shell synthesis of tin oxide hollow colloids with nanoarchitectured walls: cavity size tuning and functionalization. Abstract Text:
Shell-by-shell synthesis of tin oxide hollow colloids with nanoarchitectured walls: cavity size tuning and functionalization. Publishing Authors By Initials
Shell-by-shell synthesis of tin oxide hollow colloids with nanoarchitectured walls: cavity size tuning and functionalization. Journal Published:
PUBLICATION TYPE: Research Support, U.S. Gov't,
Journal: Small (Weinheim an der Bergstrasse, Germany)
VOLUME: 3
Page Numbers: 261-5
Journal Abbreviation: Small
ISSN: 1613-6829
DAY: 17
MONTH: Feb
YEAR: 2007
Shell-by-shell synthesis of tin oxide hollow colloids with nanoarchitectured walls: cavity size tuning and functionalization. Information
Number of References:
LANGUAGE: eng
NlmUniqueID: 101235338
Shell-by-shell synthesis of tin oxide hollow colloids with nanoarchitectured walls: cavity size tuning and functionalization. Keywords Mesh Terms:
KEYWORDS: Tin Compounds
MESH TERMS: chemistry
Chemical & Substance for Abstract: Shell-by-shell synthesis of tin oxide hollow colloids with nanoarchitectured walls: cavity size tuning and functionalization. Information
Substance Name: stannic oxide
Registry Number: 18282-10-5
Grant and Affiliation Information for Shell-by-shell synthesis of tin oxide hollow colloids with nanoarchitectured walls: cavity size tuning and functionalization.
AFFILIATION: School of Chemical and Biomolecular Engineering, Cornell University, Ithaca, NY 14853-5201, USA.
Country: Germany
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MEDLINETA: Small
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