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- Understanding the avidin–biotin binding based on polarized protein-specific charge. Dawei Zhang, Rui Duan
, Phys. Chem. Chem. Phys.
, 2021
, 23
, 21951
- Second generation DNA-encoded dynamic combinatorial chemical libraries. Francesco V. Reddavide, Meiying Cui, Weilin Lin, Naiqiang Fu, Stephan Heiden, Helena Andrade, Michael Thompson, Yixin Zhang
, Chem. Commun.
, 2019
, 55
, 3753
- A DNA–nanoparticle actuator enabling optical monitoring of nanoscale movements induced by an electric field. Kosti Tapio, Dongkai Shao, Sanna Auer, Jussipekka Tuppurainen, Markus Ahlskog, Vesa P. Hytönen, J. Jussi Toppari
, Nanoscale
, 2018
, 10
, 19297
- Designed evolution of artificial metalloenzymes: protein catalysts made to order. Marc Creus, Thomas R. Ward
, Org. Biomol. Chem.
, 2007
, 5
, 1835
- Proteins at membrane surfaces—a review of approaches. Bruce A. Macher, Ten-Yang Yen
, Mol. BioSyst.
, 2007
, 3
, 705
- Synthetic mimics of biotin/(strept)avidin. Wenqi Liu, Soumen K. Samanta, Bradley D. Smith, Lyle Isaacs
, Chem. Soc. Rev.
, 2017
, 46
, 2391
- A squaramide fluorescent ensemble for monitoring sulfate in water. Rafel Prohens, Gabriel Martorell, Pablo Ballester, Antoni Costa
, Chem. Commun.
, 2001
, 1456
- Analyzing the origins of receptor–ligand adhesion forces measured by the scanning force microscope. Adam Moore, Philip M. Williams, Martyn C. Davies, David E. Jackson, Clive J. Roberts, Saul J. B. Tendler
, J. Chem. Soc., Perkin Trans. 2
, 1999
, 419