Potential of root system of plants from wide range of families to effectively reduce membrane impermeable ferricyanide to ferrocyanide and blue coloured 2,6-dichlorophenol indophenol (DCPIP) to colourless DCPIPH2 both under non-sterile and sterile conditions, revealed prevalence of immense reducing strength at root surface. As generation of silver nanoparticles (NPs) from Ag+ involves reduction, present investigations were carried to evaluate if reducing strength prevailing at surface of root system can be exploited for reduction of Ag+ and exogenous generation of silver-NPs. Root system of intact plants of 16 species from 11 diverse families of angiosperms turned clear colorless AgNO3 solutions, turbid brown. Absorption spectra of these tu...
Silver nanoparticles (AgNPs) is widely used in commercial products due to its unique antimicrobial p...
Abstract Published studies indicate that virtually any kind of botanical material can be exploited t...
The widespread availability of nano-enabled products in the global market may lead to the release of...
Potential of root system of plants from wide range of families to effectively reduce membrane imperm...
461-467Roots of plants have immense reducing potential. Ions of noble metals namely Au3+ and Ag+ get...
<p>(<b>a</b>) and (<b>b</b>) displays root system of intact plants of <i>Portulaca grandiflora</i> i...
MeNPs can be formed in living plants by reduction of the metal ions absorbed as soluble salts. It is...
Horticulture is the branch of agriculture that deals with science and technology and business of pla...
Chemical synthesis of Ag-NPs was carried out using reduction method. The reduction mechanistic appro...
Hydroponic plant growth studies indicate that silver nanoparticles (Ag NPs) are phytotoxic. In this ...
Silver nanoparticles (AgNPs) have broad spectrum antimicrobial/biocidal properties against all class...
Plant root-mediated green synthesis of nanomaterials has been increasingly gaining popularity due to...
With the recent development of nanotechnology, there has been increased production of engineered nan...
Rapid advancement of nanotechnology has caused serious concerns about the potential release and accu...
AbstractHorticulture is the branch of agriculture that deals with science and technology and busines...
Silver nanoparticles (AgNPs) is widely used in commercial products due to its unique antimicrobial p...
Abstract Published studies indicate that virtually any kind of botanical material can be exploited t...
The widespread availability of nano-enabled products in the global market may lead to the release of...
Potential of root system of plants from wide range of families to effectively reduce membrane imperm...
461-467Roots of plants have immense reducing potential. Ions of noble metals namely Au3+ and Ag+ get...
<p>(<b>a</b>) and (<b>b</b>) displays root system of intact plants of <i>Portulaca grandiflora</i> i...
MeNPs can be formed in living plants by reduction of the metal ions absorbed as soluble salts. It is...
Horticulture is the branch of agriculture that deals with science and technology and business of pla...
Chemical synthesis of Ag-NPs was carried out using reduction method. The reduction mechanistic appro...
Hydroponic plant growth studies indicate that silver nanoparticles (Ag NPs) are phytotoxic. In this ...
Silver nanoparticles (AgNPs) have broad spectrum antimicrobial/biocidal properties against all class...
Plant root-mediated green synthesis of nanomaterials has been increasingly gaining popularity due to...
With the recent development of nanotechnology, there has been increased production of engineered nan...
Rapid advancement of nanotechnology has caused serious concerns about the potential release and accu...
AbstractHorticulture is the branch of agriculture that deals with science and technology and busines...
Silver nanoparticles (AgNPs) is widely used in commercial products due to its unique antimicrobial p...
Abstract Published studies indicate that virtually any kind of botanical material can be exploited t...
The widespread availability of nano-enabled products in the global market may lead to the release of...