1,918
Views
28
CrossRef citations to date
0
Altmetric
RESEARCH LETTER

Cucurbita pepo L. extracts as a versatile hydrotropic source for the synthesis of gold nanoparticles with different shapes

, , , , , , , , & show all
Pages 39-47 | Received 12 Dec 2014, Accepted 05 Mar 2015, Published online: 07 Apr 2015

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

P. C. Nagajyothi, S. V. Prabhakar Vattikuti, K. C. Devarayapalli, K. Yoo, Jaesool Shim & T. V. M. Sreekanth. (2020) Green synthesis: Photocatalytic degradation of textile dyes using metal and metal oxide nanoparticles-latest trends and advancements. Critical Reviews in Environmental Science and Technology 50:24, pages 2617-2723.
Read now

Articles from other publishers (27)

Li FuLi Fu. 2023. Pathways to Green Nanomaterials: Plants as Raw Materials, Reducing Agents and Hosts. Pathways to Green Nanomaterials: Plants as Raw Materials, Reducing Agents and Hosts 1 54 .
Lipi Pradhan, Devyani Yenurkar & Sudip Mukherjee. 2023. Nanomaterials and Nanocomposites Exposures to Plants. Nanomaterials and Nanocomposites Exposures to Plants 175 189 .
Dariusz Góral & Małgorzata Góral-Kowalczyk. (2022) Application of Metal Nanoparticles for Production of Self-Sterilizing Coatings. Coatings 12:4, pages 480.
Crossref
Yadav Rakesh KumarDrDrBadu ArchanaMissMisssharma AbhishekMrMr & Bhatt KhushbooMissMiss. (2022) Green Nanotechnology From Plant Extracts Synthesis And Characterization Of Gold Nanoparticles. Materials and its Characterization 1:1, pages 56-62.
Crossref
Wangjam Kabita Devi, Maibam Dhanaraj Meitei & Majeti Narasimha Vara Prasad. 2021. Handbook of Assisted and Amendment: Enhanced Sustainable Remediation Technology. Handbook of Assisted and Amendment: Enhanced Sustainable Remediation Technology 583 599 .
Emilia Benassai, Massimo Del Bubba, Claudia Ancillotti, Ilaria Colzi, Cristina Gonnelli, Nicola Calisi, Maria Cristina Salvatici, Enrico Casalone & Sandra Ristori. (2021) Green and cost-effective synthesis of copper nanoparticles by extracts of non-edible and waste plant materials from Vaccinium species: Characterization and antimicrobial activity. Materials Science and Engineering: C 119, pages 111453.
Crossref
Moumita Mondal, Meyappan Vadivel, Leena Louis & Natarajan Sakthivel. 2021. Nanobiotechnology. Nanobiotechnology 187 210 .
Lina M. Alnaddaf, Abdulsalam K. Almuhammady, Khaled F. M. Salem, Maysaa T. Alloosh, Maysoun M. Saleh & Jameel M. Al-Khayri. 2021. Nanobiotechnology. Nanobiotechnology 165 199 .
Dhanya Vishnu, Kannappan Panchamoorthy Gopinath & Balaji Dhandapani. 2021. Green Adsorbents to Remove Metals, Dyes and Boron from Polluted Water. Green Adsorbents to Remove Metals, Dyes and Boron from Polluted Water 229 243 .
Olusola B. Adewale, Scholastica O. Anadozie, Sotonye S. Potts-Johnson, Joan O. Onwuelu, Tajudeen O. Obafemi, Olukemi A. Osukoya, Adewale O. Fadaka, Hajierah Davids & Saartjie Roux. (2020) Investigation of bioactive compounds in Crassocephalum rubens leaf and in vitro anticancer activity of its biosynthesized gold nanoparticles. Biotechnology Reports 28, pages e00560.
Crossref
Ali Mehdinia & Simindokht Rostami. 2020. Nanosensor Technologies for Environmental Monitoring. Nanosensor Technologies for Environmental Monitoring 219 257 .
N. Sharma & T. Sinderpal. (2019) Sterculia Gum: Chemical Structure, Composition and Physico-Chemical Properties. Asian Journal of Chemistry 32:1, pages 1-8.
Crossref
Nour Sh. El‐Gendy, Nour Sh. El‐Gendy & Basma A. Omran. 2019. Nano and Bio‐Based Technologies for Wastewater Treatment. Nano and Bio‐Based Technologies for Wastewater Treatment 205 263 .
Sharda Sundaram Sanjay. 2019. Green Synthesis, Characterization and Applications of Nanoparticles. Green Synthesis, Characterization and Applications of Nanoparticles 27 36 .
Déborah L. Villaseñor-Basulto, Mary-Magdalene Pedavoah & Eric R. Bandala. 2019. Handbook of Ecomaterials. Handbook of Ecomaterials 105 121 .
Azamal Husen, Qazi Inamur Rahman, Muhammad Iqbal, Mansur Osman Yassin & Rakesh Kumar Bachheti. 2019. Nanomaterials and Plant Potential. Nanomaterials and Plant Potential 71 110 .
Santanu Patra & Rashmi Madhuri. 2018. Green Metal Nanoparticles. Green Metal Nanoparticles 553 602 .
S. Rajeshkumar & R. V. Santhiyaa. 2018. Exploring the Realms of Nature for Nanosynthesis. Exploring the Realms of Nature for Nanosynthesis 221 240 .
Cristina Gonnelli, Cristiana Giordano, Umberto Fontani, Maria Cristina Salvatici & Sandra Ristori. 2018. Advances in Bionanomaterials. Advances in Bionanomaterials 155 164 .
Déborah L. Villaseñor-Basulto, Mary-Magdalene Pedavoah & Eric R. Bandala. 2017. Handbook of Ecomaterials. Handbook of Ecomaterials 1 18 .
J. Santhoshkumar, S. Rajeshkumar & S. Venkat Kumar. (2017) Phyto-assisted synthesis, characterization and applications of gold nanoparticles – A review. Biochemistry and Biophysics Reports 11, pages 46-57.
Crossref
Khwaja Salahuddin Siddiqi & Azamal Husen. (2017) Recent advances in plant-mediated engineered gold nanoparticles and their application in biological system. Journal of Trace Elements in Medicine and Biology 40, pages 10-23.
Crossref
Azamal Husen. 2017. Nanoscience and Plant–Soil Systems. Nanoscience and Plant–Soil Systems 455 479 .
Khwaja Salahuddin Siddiqi & Azamal Husen. (2016) Engineered Gold Nanoparticles and Plant Adaptation Potential. Nanoscale Research Letters 11:1.
Crossref
S. Swain, S. K. Barik, T. Behera, S. K. Nayak, S. K. Sahoo, S. S. Mishra & P. Swain. (2016) Green Synthesis of Gold Nanoparticles Using Root and Leaf Extracts of Vetiveria zizanioides and Cannabis sativa and its Antifungal Activities. BioNanoScience 6:3, pages 205-213.
Crossref
Adriana Napoleão Geraldes, Andressa Alves da Silva, Jessica Leal, Gethzemani Mayeli Estrada-Villegas, Nilton Lincopan, Kattesh V. Katti & Ademar Benévolo Lug&atildeo. (2016) Green Nanotechnology from Plant Extracts: Synthesis and Characterization of Gold Nanoparticles. Advances in Nanoparticles 05:03, pages 176-185.
Crossref
Alka Yadav, Kateryna Kon, Gabriela Kratosova, Nelson Duran, Avinash P. Ingle & Mahendra Rai. (2015) Fungi as an efficient mycosystem for the synthesis of metal nanoparticles: progress and key aspects of research. Biotechnology Letters 37:11, pages 2099-2120.
Crossref