In this thesis, we have presented a powerful catalytic funneling methodologies that is capable of dealing with a complex of depolymerized lignin streams into a wide range of well-defined chemicals, polymer and pharmaceutical building blocks. Central to this method is the use of commercially available Raney nickel catalyst. In addition, we also have described the synthesis of a series of fully bio-based and recyclable polyesters and polycarbonates with tunable thermal and mechanical properties
Lignin, as the most abundant aromatic polymer, renders a great opportunity to produce sustainable ar...
Lignin, as the most abundant aromatic polymer, renders a great opportunity to produce sustainable ar...
Nowadays, the production of chemicals is heavily dependent on fossil resources. Alternatives are req...
In this thesis, we have presented a powerful catalytic funneling methodologies that is capable of de...
In this thesis, we have presented a powerful catalytic funneling methodologies that is capable of de...
In this thesis, we have presented a powerful catalytic funneling methodologies that is capable of de...
In this thesis, we have presented a powerful catalytic funneling methodologies that is capable of de...
Lignin holds tremendous and versatile possibilities to produce value-added chemicals and high perfor...
Lignin holds tremendous and versatile possibilities to produce value-added chemicals and high perfor...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
Lignin, as the most abundant aromatic polymer, renders a great opportunity to produce sustainable ar...
Lignin, as the most abundant aromatic polymer, renders a great opportunity to produce sustainable ar...
Lignin, as the most abundant aromatic polymer, renders a great opportunity to produce sustainable ar...
Nowadays, the production of chemicals is heavily dependent on fossil resources. Alternatives are req...
In this thesis, we have presented a powerful catalytic funneling methodologies that is capable of de...
In this thesis, we have presented a powerful catalytic funneling methodologies that is capable of de...
In this thesis, we have presented a powerful catalytic funneling methodologies that is capable of de...
In this thesis, we have presented a powerful catalytic funneling methodologies that is capable of de...
Lignin holds tremendous and versatile possibilities to produce value-added chemicals and high perfor...
Lignin holds tremendous and versatile possibilities to produce value-added chemicals and high perfor...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
Lignin, as the most abundant aromatic polymer, renders a great opportunity to produce sustainable ar...
Lignin, as the most abundant aromatic polymer, renders a great opportunity to produce sustainable ar...
Lignin, as the most abundant aromatic polymer, renders a great opportunity to produce sustainable ar...
Nowadays, the production of chemicals is heavily dependent on fossil resources. Alternatives are req...