Peng Yang
Fudan University
77 Papers
130 Citations
Peng Yang is an academic researcher from Fudan University. The author has contributed to research in topics: Chemistry & Medicine. The author has an hindex of 23, co-authored 56 publications. Previous affiliations of Peng Yang include Dalian Polytechnic University & Zhengzhou University.
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Papers
High densities of magnetic nanoparticles supported on graphene fabricated by atomic layer deposition and their use as efficient synergistic microwave absorbers
TL;DR: In this article, an atomic layer deposition (ALD) method has been employed to synthesize Fe3O4/graphene and Ni/Graphene composites and the structure and microwave absorbing properties of the as-prepared composites are investigated.
317
Red blood cell membrane-camouflaged melanin nanoparticles for enhanced photothermal therapy.
Qin Jiang,Zimiao Luo,Yongzhi Men,Peng Yang,Haibao Peng,Ranran Guo,Ye Tian,Zhiqing Pang,Wuli Yang +8 more
TL;DR: It was shown that RBC membrane coating on melanin nanoparticles retained their excellent photothermal property, enhanced their blood retention and effectively improved their accumulation at tumor sites, and the developed Melanin@RBC platform could have great potential in clinics for anticancer PTT.
301
Stable Radical Cation-Containing Covalent Organic Frameworks Exhibiting Remarkable Structure-Enhanced Photothermal Conversion.
TL;DR: The structure-enhanced performance of the COF ma-terial is witnessed with the photothermal conversion efficiencies as high as 63.8% and 55.2%, when exposed to 808 nm and 1064 nm lasers, respectively.
274
Total Synthesis of Rubriflordilactone B
TL;DR: The first and asymmetric total synthesis of Rubriflordilactone A, a bisnortriterpenoid isolated from Schisandra rubriflora, has been accomplished in a convergent manner.
167
Multifunctional nanoplatform for photoacoustic imaging-guided combined therapy enhanced by CO induced ferroptosis.
TL;DR: The generated CO molecules successfully increase cancer cell sensitivity to chemotherapeutics by the ferroptosis pathway and demonstrates high treatment efficacies in vitro and in vivo by combination of chemotherapy, photothermal therapy and gas therapy.
157