Palladium nanoparticles (Pd NPs) offer a wide range of novel and exciting applications in catalysis, medicine, engineering, and electronics. Currently, these NPs are synthesized using conventional physical and chemical methods. These methods have several disadvantages as the physical methods usually require energy-intensive processes, and the chemical methods often involve harmful solvents or produce toxic by-products. Lately, more environmentally friendly approaches for the synthesis of NPs have emerged using microorganisms. Several bacteria were reported for their ability to biosynthesize Pd NPs. In this process, Pd ions are biologically transported into the bacterial cells and subsequently reduced to metallic Pd, forming Pd NPs. The curr...
Production of catalytic palladium (Pd) nanoparticles using dissimilatory metal-reducing bacteria suc...
In lieu of chemical and physical methods, biologically guided synthesis is increasingly used as a co...
Palladium (Pd) is a cheap and effective electrocatalyst that is capable of replacing platinum (Pt) ...
The palladium (Pd)-catalysed reaction has attracted much attention, making Pd the most valuable of t...
Aerobically grown E. coli cells reduced Pd(II) via a novel mechanism using formate as the electron d...
Precious metals supported on ferrimagnetic particles have a diverse range of uses in catalysis. Howe...
Numerous studies have focused on the bacterial synthesis of palladium nanoparticles (bio-Pd NPs), vi...
Aerobically grown E. coli cells reduced Pd(II) via a novel mechanism using formate as the electron d...
The increasing demand and limited natural resources for industrially important platinum-group metal ...
Palladium (Pd), due to its unique catalytic properties, is an industrially important heavy metal esp...
New biological inspired methods were recently developed to recover precious metals from waste stream...
Numerous studies have focused on the bacterial synthesis of palladium nanoparticles (bio-Pd NPs), v...
Precious metals supported on ferrimagnetic particles form a diverse range of catalysts. Here we show...
AbstractFive gram negative and two gram positive bacterial strains known for their heavy metal toler...
ABSTRACT: Sustainable methods are needed to recycle precious metals and synthesize catalytic nanopar...
Production of catalytic palladium (Pd) nanoparticles using dissimilatory metal-reducing bacteria suc...
In lieu of chemical and physical methods, biologically guided synthesis is increasingly used as a co...
Palladium (Pd) is a cheap and effective electrocatalyst that is capable of replacing platinum (Pt) ...
The palladium (Pd)-catalysed reaction has attracted much attention, making Pd the most valuable of t...
Aerobically grown E. coli cells reduced Pd(II) via a novel mechanism using formate as the electron d...
Precious metals supported on ferrimagnetic particles have a diverse range of uses in catalysis. Howe...
Numerous studies have focused on the bacterial synthesis of palladium nanoparticles (bio-Pd NPs), vi...
Aerobically grown E. coli cells reduced Pd(II) via a novel mechanism using formate as the electron d...
The increasing demand and limited natural resources for industrially important platinum-group metal ...
Palladium (Pd), due to its unique catalytic properties, is an industrially important heavy metal esp...
New biological inspired methods were recently developed to recover precious metals from waste stream...
Numerous studies have focused on the bacterial synthesis of palladium nanoparticles (bio-Pd NPs), v...
Precious metals supported on ferrimagnetic particles form a diverse range of catalysts. Here we show...
AbstractFive gram negative and two gram positive bacterial strains known for their heavy metal toler...
ABSTRACT: Sustainable methods are needed to recycle precious metals and synthesize catalytic nanopar...
Production of catalytic palladium (Pd) nanoparticles using dissimilatory metal-reducing bacteria suc...
In lieu of chemical and physical methods, biologically guided synthesis is increasingly used as a co...
Palladium (Pd) is a cheap and effective electrocatalyst that is capable of replacing platinum (Pt) ...