FRANKS S.; HARTLEY F. R.; MCCAFFREY D. J. A., J. CHEM. SOC. PERKIN TRANS., 1979, NO 12, PART 1, 3029-3033
作者:FRANKS S.、 HARTLEY F. R.、 MCCAFFREY D. J. A.
DOI:——
日期:——
Method for recovering a group VIII metal solid complex and hydroformylation method
申请人:MITSUBISHI KASEI CORPORATION
公开号:EP0429963B1
公开(公告)日:1993-03-17
ANTIATHEROSCLEROTIC AND ANTITHROMBOTIC 1-BENZOPYRAN-4-ONES AND 2-AMINO-1,3-BENZOXAZINE-4-ONES
申请人:THE UPJOHN COMPANY
公开号:EP0525123A1
公开(公告)日:1993-02-03
COMPOSITION AND POLYMER
申请人:Asahi Kasei Kabushiki Kaisha
公开号:EP2735581B1
公开(公告)日:2021-07-14
METHODS OF FORMING A NANOCRYSTAL
申请人:Ye Enyi
公开号:US20110033368A1
公开(公告)日:2011-02-10
Methods of forming a nanocrystal are provided. The nanocrystal may be a binary nanocrystal of general formula M1A or of general formula M1O, a ternary nanocrystal of general formula M1M2A, of general formula M1AB or of general formula M1M2O or a quaternary nanocrystal of general formula M1M2AB. M1 is a metal of Groups II-IV, Group VII or Group VIII of the PSE. A is an element of Group VI or Group V of the PSE. O is oxygen. A homogenous reaction mixture in a non-polar solvent of low boiling point is formed, that includes a metal precursor containing the metal M1 and, where applicable M2. For an oxygen containing nanocrystal the metal precursor contains an oxygen donor. Where applicable, A is also included in the homogenous reaction mixture. The homogenous reaction mixture is under elevated pressure brought to an elevated temperature that is suitable for forming a nanocrystal.