supported by the National Natural Science Foundation of China(22176138,22276129);a project funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD)。
The efficient separation of fission products,such as TcO_(4)^(-)and I^(-),holds strategic significance for the management of radioactive wastes and environmental protection.In this study,we propose an ultrafast strate...
supported by the National Natural Science Foundation of China(22171210,21771139,U20A20141,U23A20119);CAS Project for Young Scientists in Basic Research(YSBR-039);Tianjin Research Innovation Project for Postgraduate Students(2022BKY200);C?EM,School of Physical Sciences and Technology,Shanghai Tech University(#EM02161943)for the scientific and financial support of EM facilities。
The development of hydrogen-bonded organic frameworks(HOFs)faces significant constraints,primarily attributed to their fragile architectures and limited functionalization capabilities.To overcome these limitations,thi...
supported by JST Strategic Japanese-Chinese Research Cooperative Program 2013
Development of highly functional cesium selective adsorbents for the decontamination of high-activity-level water(HALW) from the Fukushima NPP-1 accident is very urgent. In order to selectively adsorb the radioactive ...
Supported by the National Natural Science Foundation of China (Grant Nos. 20471005, 10775008);the Research Fund for the Doctoral Program of Higher Edu-cation of China (No. 20060001032);the Commission of Science,Technology and Industry for National Defense of China
The adsorption and migration behavior of a radionuclide in geological media heavily depends on its chemical forms in a given chemical environment.In order to predict the temporal and spatial distribution of radionucli...
Supported by the National Natural Science Foundation of China (Grant Nos. 20571085, and 20877099);Fund of the President of Chinese Academy of Sciences (Grant No. 0521021T04);2005/2006 USA Li’s Foundation Merit Prize Fund;Fund of Graduate University of Chinese Academy of Sciences (Grant No. 065101HM03);Fund of the Key Laboratory of Nuclear Analysis of the Institute of High Energy Physics of Chinese Academy of Sciences (Grant No. K129)
In this essay, some discussions and comments about the paper entitled "Can the decay rate of 32P be changed by mechanic motion?" (Ding et al., Science in China Series B:Chemistry (Chinese version), 2008, 38(11):1035-1...
This work was partially supported by the National Natural Science Foundation of China (Grant No. 20571085);Grant of the President of the Chinese Academy of Sciences (0521021T04);Chinese Academy of Sciences (KJCX3.SYW.N12);2005/2006 USA Li’s Foundation Merit Prize grant, Ministry of Education of China (0519061A90);Graduate University of Chinese Academy of Sciences (GUCAS) Grant (R 1003)
The changes of decay rates of radionuclide 111In(electron capture) and 32P(β decay) induced by exter-nal mechanic motion are studied. The results indicate that,in the external circular rotation in clockwise and antic...
A now polarographic immunoassay was developed In this assay,human serum albumin (HSA) as the model antigen was covalently labeled with organic compound erythrosin B(EB) containing four non-radioactive iodides through ...