24 Papers
3 Citations
Peng Wu is an academic researcher from Shandong University of Science and Technology. The author has contributed to research in topics: Chemistry & Medicine. The author has an hindex of 6, co-authored 15 publications. Previous affiliations of Peng Wu include Center for Advanced Materials.
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Papers
Controlled Encapsulation of Functional Organic Molecules within Metal–Organic Frameworks: In Situ Crystalline Structure Transformation
Guan Jinju,Yu Hu,Wang Yu,Hongfeng Li,Zhiling Xu,Tao Zhang,Peng Wu,Suoying Zhang,Xiao Gengwu,Wenlan Ji,Linjie Li,Meixuan Zhang,Fan Yun,Lin Li,Zheng Bing,Weina Zhang,Wei Huang,Fengwei Huo +17 more
TL;DR: Interestingly, the as-prepared molecules/ZIF-8-L composites with the leaf-like morphology exhibit good fluorescence properties and size selectivity in fluorescent quenchers due to the molecular sieving effect of the well-defined microporous ZIF- 8-L.
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Approach to the management of gold ore tailings via its application in cement production
Qiang Wang,Jingjing Li,Xiangnan Zhu,Geng Yao,Peng Wu,Zhiming Wang,Xianjun Lyu,Shugang Hu,Jun Qiu,Ping Chen,Junxiang Wang +10 more
TL;DR: In this article, the gold ore tailings were used a siliceous raw material for cement production, and the results proved that the clinker phases of the cements produced with different addition of gold-ore tailings are 3CaO·SiO2, 2CaO•SiO•2, 3 CaO·Al2O3, and 4 CaO•Al•O3·Fe2O•3, respectively, and their hydration products are portlandite, calcium silicate hydrate, and ettringite.
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Preparation of Ca–Si–Al–Mg porous ceramics by Co-operation of Ca&Mg-contained soda residue and altered rock gold tailings
TL;DR: In this article, the effects of soda residue, Al2O3 and MgO contents on bulk density, compressive strength and crystal phase of porous ceramics were investigated.
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Advanced utilization of copper in waste printed circuit boards: Synthesis of nano-copper assisted by physical enrichment
Xiang-nan Zhu,Chun-chen Nie,Yang Ni,Tao Zhang,Biao Li,De-zhang Wang,Shi-juan Qu,Fa-ming Qiao,Xianjun Lyu,Jun Qiu,Lin Li,Yangguang Ren,Peng Wu +12 more
TL;DR: The present study proposes an environmentally friendly process of preparing nano-copper from the copper in WPCBs, which avoids overgrinding of low value components.
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