Comparison of Chemical and Biological Properties of Metal Nanoparticles (Au, Ag), with Metal Oxide Nanoparticles (ZnO-NPs) and their Applications

Publish Year: 1398
نوع سند: مقاله ژورنالی
زبان: English
View: 352

This Paper With 19 Page And PDF Format Ready To Download

  • Certificate
  • من نویسنده این مقاله هستم

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این Paper:

شناسه ملی سند علمی:

JR_AJCS-3-2_008

تاریخ نمایه سازی: 17 آذر 1398

Abstract:

Biological application of nanoparticles (NPs) is a rapidly developing area of nanotechnology, providing new possibilities in the diagnosis and treatment of human diseases. Nowadays, NPs have shown abilities to be used as alternative treatment for difficult diseases. Therefore, it is important to understand NP chemistry, preparation, interaction and possible mechanisms involved in its interaction with cancer cells and bacterial membranes. This study reports comparison between Au, Ag and ZnO NPs, and discusses their toxicity and physicochemical properties. In addition, this work aims to review different strategies of surface modification and functionalization of colloidal nanoparticles.

Authors

Wanisa Abdussalam-Mohammed

Department of Chemistry, College of Science, Sebha University, Sebha, Libya

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
  • . K. Naka, Y. Chujo. Nanohybridization of organic-inorganic materials. Springer, ...
  • . S.O. Obare, R.E. Hollowell, C.J. Murphy. Langmuir, 2002, 18, ...
  • . Y. Kim, R.C. Johnson, J.T. Hupp, Nano Lett., 2001, ...
  • . S. Watanabe, M. Sonobe, M. Arai, Y. Tazume, T. ...
  • . C.A. Mirkin, R.L. Letsinger, R.C. Mucic, J.J. Storhoff, Nature, ...
  • . S.Y. Lin, S.W. Liu, C.M. Lin, C.H. Chen, Anal. ...
  • . G. Chumanov, K. Sokolov, B.W. Gregory, T.M. Cotton, J. ...
  • . S. Nie, S.R. Emory, Science., 1997, 275, 1102-1106. ...
  • . J. Shan, H. Tenhu, Chem. Commun., 2007, 2007, 4580-4598. ...
  • . L.L. Wang, C. Hu, L.Q. Shao, Int. J. nanomed., ...
  • . F. Ghandehari, M. Fani, M. Rezaee, J. Med. Chem. ...
  • . P. Schlexer, A.B. Andersen, B. Sebok, I. Chorkendorff, J. ...
  • . G. Thirumurugan, M. Dhanaraju, Antimicrobial Agents., 2012. ...
  • . F. Mohammadi, M. Yousefi, R. Ghahremanzadeh, Adv. J. Chem. ...
  • . A. Abeer Mohamad, Int. J. Pharma. Bio. Sci., 2015, ...
  • . I. Sheikhshoaie, M. Sheikhshoaei, S. Ramezanpour, Chem. Method., 2018, ...
  • . A. Dehno Khalaji, Chem. Method., 2019, 3, 519-683. ...
  • . I. Amar, A. Sharif, M. Ali, S. Alshareef, F. ...
  • . D. Mandal, M.E. Bolander, D. Mukhopadhyay, G. Sarkar, P. ...
  • . Z. Duan, R. Sun, R. Liu, C. Zhu, Ene. ...
  • . G. Zhao, S.E. Stevens, Biometals., 1998, 11, 27-32. ...
  • . C.Y. Lee, Y.T. Haung, W.F. Su, C.F. Lin, Appl. ...
  • . Y.N. Slavin, J. Asnis, U.O. Häfeli, H. Bach, J. ...
  • . G.M. Patel, G.C. Patel, R.B. Patel, J.K. Patel, M. ...
  • . M. Fischman, V. Murashov, J. Borak, J. Seward. J. ...
  • . R. Cao, R. Villalonga, A. Fragoso, IEE Proceed. Nanobiotechnol., ...
  • . D. Quintanar-Guerrero, E. Allémann, H. Fessi, E. Doelker, Drug ...
  • . L.G. Fernández, F. Puntes, B. Boix. PhD Thesis. Universitat ...
  • . J.A. Dahl, B.L.S. Maddux, J.E. Hutchison, Chem. Rev., 2007, ...
  • . M.C. Daniel, D. Astruc, Chem. Rev., 2004, 104, 293-346. ...
  • . H. Hirai, Y. Nakao, N. Toshima, J. Macromolecul. Sci. ...
  • . H. Hirai, Y. Nakao, N. Toshima, J. Macromolecul. Sci. ...
  • . Y. Ju-Nam, W. Abdussalam-Mohammed, J. J. Ojeda, Faraday Discuss., ...
  • . L. Jia, T. He, Z. Li, X.M. Li, Chin. ...
  • . J.M. Devi, J. Molecul. Grap. Model., 2017, 74, 359-365. ...
  • . J.W. Park, J.S. Shumaker-Parry, ACS Nano., 2015, 9, 1665-1682. ...
  • . G. Schmid, V. Maihack, F. Lantermann, S. Peschel, J. ...
  • . P. Shanmugam, K. Rajakumar, R. Boddula, R.C. Ngullie, W. ...
  • . G. Schmid, M. Harms, J.O. Malm, J.O. Bovin, J. ...
  • . F.L. Wimmer, S. Wimmer, Inorg. Chim. Acta., 1988, 149, ...
  • . G.H. Woehrle, L.O. Brown, J.E. Hutchison, J. Am. Chem. ...
  • . W.W. Weare, S.M. Reed, M.G. Warner, J. E. Hutchison, ...
  • . D. Mahl, J. Diendorf, S. Ristig, C. Greulich, Z.A. ...
  • . R.M. Lahtinen, S.F. Mertens, E. East, C.J. Kiely, D.J. ...
  • . Z. Khan, T. Singh, J.I. Hussain, A.A. Hashmi, Colloids ...
  • . X. Ji, X. Song, J. Li, Y. Bai, W. ...
  • . I. Ojea-Jiménez, F.M. Romero, N.G. Bastús, V. Puntes, J. ...
  • . A. Leifert, Y. Pan-Bartnek, U. Simon, W. Jahnen-Dechent, Nanoscale., ...
  • . M.A. Neouze, U. Schubert, Monat. Chemie-Chem. Mon., 2008,139, 183-195. ...
  • . M.J. Rak, N K. Saadé, T. Friščić, A. Moores, ...
  • . H. Noorizadeh, A. Farmany, Adv. J. Chem. Section A., ...
  • . J. Cure, Y. Coppel, T. Dammak, P.F. Fazzini, A. ...
  • . E.D. Cavassin, L.F.P. de Figueiredo, J.P. Otoch, M.M. Seckler, ...
  • . L.S. Dorobantu, C. Fallone, A.J. Noble, J. Veinot, G. ...
  • . E.S. Aazam, Z. Zaheer, Bioprocess Biosystem. Eng., 2016, 39, ...
  • . X. Huang, X. Bao, Y. Liu, Z. Wang, Q. ...
  • . M.M. Oliveira, D. Ugarte, D. Zanchet, A.J. Zarbin, J. ...
  • . S. Sabella, A. Galeone, G. Vecchio, R. Cingolani, P.P. ...
  • . J. Bennington-Castro, MRS Bull., 2016, 41, 178-179. ...
  • . S. Barua, S. Mitragotri, Nano Today., 2014, 9, 223-243. ...
  • . N. Padmavathy, R. Vijayaraghavan, Sci. Technol. Adv. Mater., 2008, ...
  • . A.M. El Badawy, R.G. Silva, B. Morris, K.G. Scheckel, ...
  • . I.P. Mukha, A. Eremenko, N. Smirnova, A. Mikhienkova, G. ...
  • . L. Wang, H. He, Y. Yu, L. Sun, S. ...
  • . V. Railean‐Plugaru, P. Pomastowski, K. Rafinska, M. Wypij, W. ...
  • . H. Mu, J. Tang, Q. Liu, C. Sun, T. ...
  • . A. Gupta, R.F. Landis, V.M. Rotello, F1000 Res., 2016, ...
  • . W. Zhang, Y. Li, J. Niu, Y. Chen. Langmuir., ...
  • . J. Gopal, M. Manikandan, N. Hasan, C.H. Lee, H.F. ...
  • . A.A. Mohammed, Int. J. Curr. Microbiol. App. Sci., 2015, ...
  • . I. Sondi, B. Salopek-Sondi, J. Coll. Interface Sci., 2004, ...
  • . L. Liu, J. Yang, J. Xie, Z. Luo, J. ...
  • . A. Grigor’eva, I. Saranina, N. Tikunova, A. Safonov, N. ...
  • . C. Santos, A. Albuquerque, F. Sampaio, D. Keyson. Microbial ...
  • . M.M. Mohamed, S.A. Fouad, H.A. Elshoky, G.M. Mohammed, T.A. ...
  • . A. Sirelkhatim, S. Mahmud, A. Seeni, N.H.M. Kaus, L.C. ...
  • . B.V. Kumar, H.S.B. Naik, D. Girija, B.V. Kumar, J. ...
  • . a) A. Nakhaei, A. Davoodnia, H. Nakhaei, J. Chem. ...
  • . K. Senthil, Y. Tak, M. Seol, K. Yong, Nanoscale ...
  • . S. Prashant, K. Kamlesh, C. Ramesh. Journal of Nanomedicine ...
  • . M. Nasrollahzadeh, S. Mahmoudi‐Gom Yek, N. Motahharifar, M. Ghafori ...
  • . V.V. Torbina, A.A. Vodyankin, S. Ten, G.V. Mamontov, M.A. ...
  • . A. Murugadoss, A. Chattopadhyay, Nanotechnol., 2007, 19, 015603. ...
  • . S.V. Otari, R.M. Patil, N.H. Nadaf, S.J. Ghosh, S.H. ...
  • . C. Deraedt, L. Salmon, S. Gatard, R. Ciganda, R. ...
  • . X. Liu, J. Ruiz, D. Astruc, J. Inorg. Org. ...
  • .S. Liu, Z. Zhang, Y. Wang, F. Wang, M.Y. Han, ...
  • . N. Berahim, W. Basirun, B. Leo, M. Johan, Catalysts, ...
  • .X. Fang, Y. Wang, Z. Wang, Z. Jiang, M. Dong, ...
  • . N.K.R. Bogireddy, H.A.K. Kumar, B.K. Mandal, J. Environ. Chem. ...
  • . Y. Yuan, N. Yan, P.J. Dyson, Inorg. Chem.., 2011, ...
  • . B.L.V. Prasad, S.I. Stoeva, C.M. Sorensen, V. Zaikovski, K.J. ...
  • . S. Wang, Q. Zhao, H. Wei, J.Q. Wang, M. ...
  • . S. Alizadeh, T. Madrakian, M. Bahram, Adv. J. Chem. ...
  • . A. Sharma, S.V. Madhunapantula, G.P. Robertson, Expert Opin. Drug ...
  • . C.M. Goodman, C.D. McCusker, T. Yilmaz, V.M. Rotello, Bioconjugate ...
  • . A.M. Alkilany, C.J. Murphy, J. Nanoparticle Res., 2010, 12, ...
  • . C.L. Villiers, H. Freitas, R. Couderc, M.B. Villiers, P.N. ...
  • . J. Liu, Y. Kang, S. Yin, B. Song, L. ...
  • . S. Taghavi Fardood, A. Ramazani, F. Moradnia, Z. Afshari, ...
  • نمایش کامل مراجع