56466-44-5Relevant academic research and scientific papers
Emissive Platinum(II) Cages with Reverse Fluorescence Resonance Energy Transfer for Multiple Sensing
Zhang, Zeyuan,Zhao, Zhengqing,Wu, Lianwei,Lu, Shuai,Ling, Sanliang,Li, Guoping,Xu, Letian,Ma, Lingzhi,Hou, Yali,Wang, Xingchen,Li, Xiaopeng,He, Gang,Wang, Kai,Zou, Bo,Zhang, Mingming
, p. 2592 - 2600 (2020)
It is quite challenging to realize fluorescence resonance energy transfer (FRET) between two chromophores with specific positions and directions. Herein, through the self-assembly of two carefully selected fluorescent ligands via metal-coordination intera
Aqueous Platinum(II)-Cage-Based Light-Harvesting System for Photocatalytic Cross-Coupling Hydrogen Evolution Reaction
Zhang, Zeyuan,Zhao, Zhengqing,Hou, Yali,Wang, Heng,Li, Xiaopeng,He, Gang,Zhang, Mingming
supporting information, p. 8862 - 8866 (2019/05/29)
Photosynthesis is a process wherein the chromophores in plants and bacteria absorb light and convert it into chemical energy. To mimic this process, an emissive poly(ethylene glycol)-decorated tetragonal prismatic platinum(II) cage was prepared and used a
Precise synthesis of end-functionalized Oligo(2,5-dialkoxy-1,4-phenylene vinylene)s with controlled repeat units via combined olefin metathesis and wittig-type coupling
Abdellatif, Mohamed Mehawed,Nomura, Kotohiro
supporting information, p. 1618 - 1621 (2013/07/05)
The precise synthesis of chemically, analytically pure oligo(2,5-dialkoxy- 1,4-phenylene vinylene)s [OPVs, alkoxy = O(CH2)2OSi iPr3] with strictly controlled repeat units (up to 15 repeat units) and well-defined end groups has been achieved by a combined olefin metathesis reaction of 2,5-dialkoxy-1,4-divinylbenzene or their derivatives with a molybdenum-alkylidene complex and the subsequent Wittig-type cleavage with their dicarboxaldehyde analogues. The effects of the repeat units and the end functional groups toward their UV-vis and the fluorescence spectra have been clearly demonstrated.
