This is an interim version of our Electronic Legal Deposit Catalogue-eJournals and eBooks while we continue to recover from a cyber-attack.
Long‐Lived Phosphorescence: Strongly Enhanced Long‐Lived Persistent Room Temperature Phosphorescence Based on the Formation of Metal–Organic Hybrids (Advanced Optical Materials 6/2016). Issue 6 (June 2016)
Record Type:
Journal Article
Title:
Long‐Lived Phosphorescence: Strongly Enhanced Long‐Lived Persistent Room Temperature Phosphorescence Based on the Formation of Metal–Organic Hybrids (Advanced Optical Materials 6/2016). Issue 6 (June 2016)
Main Title:
Long‐Lived Phosphorescence: Strongly Enhanced Long‐Lived Persistent Room Temperature Phosphorescence Based on the Formation of Metal–Organic Hybrids (Advanced Optical Materials 6/2016)
Abstract : Based on an eco‐friendly and cost‐effective synthesis route, the controllable assembly of aromatic acids and Zn ions affords highly stable metal–organic frameworks, which show high‐performance and long‐lived room‐temperature afterglow. Such materials, presented by X. Yang and D. Yan on page 897, can be used for energy‐storage light‐emitting, similar to self‐luminous stars at night.