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| 1 | What kind of optical model potentials should be used for deuteron stripping reactions?显示文摘This paper presents the results of a study that compares CTOM, a microscopic optical model potential(OMP), which is an optical model co-created by the China Nuclear Data Center & Tuebingen University, to CH89, which is a typical phenomenological OMP.The respective OMPs were tested by applying them to the modelling of nucleon elastic scattering and(d,p) transfer reactions involving14C,36S, and58Ni targets at both low and relatively high energies. The results demonstrated that although both potentials successfully accounted for the angular distributions of both the elastic scattering and transfer cross sections, the absolute values of the transfer cross sections calculated using CTOM were approximately 25% larger than those calculated using CH89. This increased transfer cross sections allowed CTOM to produce single particle strength reduction factors for the three reactions that were consistent with those extracted from(e,e′p) reactions as well as with more recent(p,2p) and(p,pn) reactions. Notch tests suggested that nucleon elastic scattering and transfer reactions are sensitive to different regions of the OMP;accordingly,phenomenological OMPs, which are constrained only by elastic scattering cross sections, may not be sufficient for nucleon transfer reactions. Therefore, we suggest that microscopic OMPs, which reflect more theoretical considerations, should be preferred over phenomenological ones in calculations of direct nuclear reactions. | XiaoYan Yun DanYang Pang YiPing Xu Zhi Zhang RuiRui Xu ZhongYu Ma CenXi Yuan | 2020 | Science China(Physics,Mechanics & Astronomy)2020,63,2: | 2 |
| 2 | Import of Rift Valley fever to China:a potential new threat?显示文摘Several recent studies in Virologica Sinica and other journals have highlighted the enormous international challenge of emerging arboviral diseases,such as Zika virus disease,dengue,and chikungunya(Islam et al.,2015;Maurice et al.,2015;Dai et al.,2016;Deng et al.,2016;Song et al.,2016;Wang et al.,2016;Xu et al.,2016;Zhang et al.,2016;Zhou | Xinliang FU Lifang Wang Bo Fang Ruirui Ma Yun Zheng San Huang Pei Zhou Zongxi Cao Jin Tian Shoujun Li Guihong Zhang | 2016 | Virologica Sinica2016,31,5: | 2 |
| 3 | Formation of a Metal–Organic Framework with High Surface Area and Gas Uptake by Breaking Edges Off Truncated Cuboctahedral Cages显示文摘 | Ruirui Yun Zhiyong Lu Yi Pan Xiaozeng You Junfeng Bai | 2013 | Angew Chem Int Ed2013,,43: | 1 |
| 4 | Fusing high symmetric coordination polyhedrons of Cu6 ( PIP)4, Cuz (PIP) s, and Cu2 (PIP)24 into an unprecedented porous MOF: synthesis, structure, and its remarkable CO2 selectivity 显示文摘 | Yun Ruirui Duan Jingui Bai Junfeng | 2013 | Cryst Growth Des2013,13,1: | 1 |
| 5 | Post-modification of MOF to fabricate single-atom dispersed hollow nanocages catalysts for enhancing CO_(2)conversion显示文摘During the catalytic process,the microenvironment and surface area of the catalyst will affect the catalytic performance.Hence,an assisted organic linker coated metal-organic framework(MOF)has been applied,to form Ni/HNC(HNC represents hollow nanocage)for electrocatalytic CO_(2)reduction.Remarkably,Ni/HNC achieves superb activity with high Faradaic efficiency(FE)of 97.2%at 0.7 V vs.reversible hydrogen electrode(RHE)towards CO_(2)conversion to CO.In contrast to Ni/NPC(afforded from the naked MOF),the Ni/HNC displays higher FE and selectivity on CO rather than H_(2),owing to the large nanocage which extraordinarily facilitates CO_(2)enrichment and the active sites easily accessible.This work provides a general and feasible route to construct high-efficient electrochemical CO_(2)reduction reaction(EC-CO_(2)RR)catalysts via post-modified MOFs. | Ruirui Yun Ruiming Xu Changsong Shi Beibei Zhang Tuanhui Li Lei He Tian Sheng Zheng Chen | 2023 | Nano Research2023,16,7: | 0 |