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Inner Sphere Reorganization Energy for the Electron Transfer Reactions between M-C_6H_6 and M^+-C_6H_6 Complexes in Gaseous phase: An ab initio Computation 被引量:1
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作者 Zheng Yu ZHOU Jian XU +1 位作者 Chuan Song ZHANG Xing Ming ZHOU (Department of Chemistry, Qufu Normal University, Qufu, 273165) 《Chinese Chemical Letters》 SCIE CAS CSCD 1998年第11期0-0,共2页
The complex of sodium perrhenate with ester derivative of calix[4]arene having the stoichiometric formula [NaL]Reo4.H2O, was prepared. The X-ray structure analysis revealed that the sodium ion is coordinated to four e... The complex of sodium perrhenate with ester derivative of calix[4]arene having the stoichiometric formula [NaL]Reo4.H2O, was prepared. The X-ray structure analysis revealed that the sodium ion is coordinated to four ether and four carbonyl oxygen atoms giving a coordination number of eight with a tetragonal antiprism configUration. The complex cation [NaL]+ and anion ReO4 are linked by electrostatic attraction. 展开更多
关键词 Calix arene sodium perrhenate crystal structure
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Rational design of a cationic polymer network towards record high uptake of ^(99)TcO_(4)^(-)in nuclear waste 被引量:1
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作者 Jie Li Long Chen +7 位作者 Nannan Shen Rongzhen Xie Matthew VSheridan Xijian Chen Daopeng Sheng Duo Zhang Zhifang Chai Shuao Wang 《Science China Chemistry》 SCIE EI CSCD 2021年第7期1251-1260,共10页
^(99)Tc is a long-lived radionuclide present in large amounts as TcO_(4)^(-)-anion in used nuclear fuel.Its removal from the waste stream is highly desirable because of its interference capability with actinide separa... ^(99)Tc is a long-lived radionuclide present in large amounts as TcO_(4)^(-)-anion in used nuclear fuel.Its removal from the waste stream is highly desirable because of its interference capability with actinide separation and its volatile nature during the nuclear waste vitrification process.Despite the progress achieved in the past few years,the design of anion-exchange materials with optimized Tc uptake property and improved stability under the extreme condition is still a research goal beneficial for reducing the volume of secondary radioactive solid waste generated during the waste partitioning process.However,their design philosophy remains elusive,with challenges coming from charge repulsion,steric hindrance,and insufficient reactive sites within the materials.Herein,we present a design philosophy of cationic polymer network materials for TcO_(4)^(-)separation by systematic precursor screening and structure prediction.This affords an optimized material,SCU-CPN-2(SCU=Soochow University),with extremely high positive charge density while maintaining high radiation resistance.SCU-CPN-2 exhibits a record high adsorption capacity1,467 mg/g towards the surrogate ReO_(4)^(-)compared to all anion-exchange materials reported up to date.In addition to ultrafast adsorption kinetics,SCU-CPN-2 has remarkable selectivity over nitrate and sulfate,and facile recyclability. 展开更多
关键词 PERTECHNETATE perrhenate adsorption adsorption capacity cationic organic polymer
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