BIOMOLECULE

作品数:56被引量:111H指数:5
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相关领域:理学生物学更多>>
相关作者:杨莎莎李红民陈富林崔继红张万杰更多>>
相关机构:华东师范大学西北大学清华大学更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金广东省自然科学基金更多>>
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Low-loading gold in situ doped with sulfur by biomolecule-assisted approach for promoted electrochemical carbon dioxide reduction被引量:1
《Nano Research》2023年第2期2059-2064,共6页Meijie Tan Xiaoqian Han Sen Ru Chao Zhang Zhouru Ji Zhaolin Shi Guomeng Qiao Yunying Wang Ruixue Cui Qiquan Luo Jiqing Jiao Yaguang Li Tongbu Lu 
supported by the National Natural Science Foundation of China(Nos.52072260,21931007,21790052,and U21A20317);the Science and Technology Support Program for Youth Innovation in Universities of Shangdong Province(No.2020KJA012);the Tianjin Natural Science Foundation(Nos.21JCZXJC00130 and B2021201074);the Haihe Laboratory of Sustainable Chemical Transformations,National Key R&D Program of China(No.2017YFA0700104);the University Synergy Innovation Program of Anhui Province(No.GXXT-2020-001).
For electrochemical carbon dioxide reduction(CO_(2)RR),CO_(2)-to-CO conversion is considered an ideal route towards carbon neutrality for practical applications.Gold(Au)is known as a promising catalyst with high selec...
关键词:electrochemical CO_(2)reduction nanocomposites heterogeneous catalyst in situ sulfured HETEROATOMS 
3D RNA nanocage for encapsulation and shielding of hydrophobic biomolecules to improve the in vivo biodistribution
《Nano Research》2020年第12期3241-3247,共7页Congcong Xu Kaiming Zhang Hongran Yin Zhefeng Li Alexey Krasnoslobodtsev Zhen Zheng Zhouxiang Ji Sijin Guo Shanshan Li Wah Chiu Peixuan Guo 
The research in P.G.’s lab was supported by NIH grants(Nos.R01EB019036,U01CA151648,and U01CA207946)to Peixuan Guo;The cryo-EM work was supported by NIH grant No.5941GM103832(W.C.)and Office of Naval Research grant No.N00014-20-1-2084(W.C.).P.G.’s Sylvan G.Frank Endowed Chair position in Pharmaceutics and Drug Delivery is funded by the CM Chen Foundation.The authors would like to thank the Nanoimaging Core Facility at UNMC for assistance with AFM imaging.The facility is in part supported by funds received from the Nebraska Research Initiative(NRI).The animal study protocol was approved by the Institutional Animal Care and Use Committee at The Ohio State University.The authors would like to thank Alyssa Castillo for help in sample preparation.
Ribonucleic acid(RNA)nanotechnology platforms have the potential of harboring therapeutics for in vivo delivery in disease treatment.However,the nonspecific interaction between the harbored hydrophobic drugs and cells...
关键词:ribonucleic acid(RNA)nanocage three-way junction(3WJ) ENCAPSULATION hydrophobic biomolecule RNA nanotechnology 
Recent advances towards single biomolecule level understanding of protein adsorption phenomena unique to nanoscale polymer surfaces with chemical variations被引量:1
《Nano Research》2020年第5期1295-1317,共23页David H.Cho Tian Xie Johnson Truong Andrew C.Stoner Jong-in Hahm 
D.H.C.,T.X,and J.T.acknowledge financial support on this work by the National Science Foundation(NSF Award Nos.CHE1404658,CHE1903857)from the Macromolecular,Supramolecular and Nanochemistry Program under the Division of Chemistry.J.H.acknowledges the NSF support from the Independent Research/Development(IR/D)program while serving at the National Science Foundation.
Protein adsorption onto polymer surfaces is a very complex and ubiquitous phenomenon whose integrated process impacts essential applications in our daily lives such as food packaging materials,health devices,diagnosti...
关键词:nanoscale protein adsorption nanoscale protein assembly protein self-assembly on polymer protein nanopatterning protein-nanosurface interaction 
Biomolecule-templated photochemical synthesis of silver nanoparticles: Multiple readouts of localized surface plasmon resonance for pattern recognition被引量:1
《Nano Research》2018年第6期3213-3221,共9页Fang Pu Xiang Ran Meng Guan Yanyan Huang Jinsong Ren Xiaogang Qu 
Silver nanoparticles (AgNPs) with distinct localized surface plasmon resonance (LSPR) absorption spectra can be synthesized using different proteins as templates upon irradiation by light. We utilized the multiple...
关键词:localized surface plasmon resonance silver nanoparticles pattern recognition BIOMOLECULE photochemical synthesis 
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