The precision design of surface properties of supports and immobilization methodologies is essential for improving the biocatalytic activity of immobilized enzymes. In this study, we proposed a surface heterogeneity regulation strategy of graphene oxide (GO) to oriented immobilize adenylate cyclase (AC). The grafted flexible chain of polyethylene glycol amine (PEG-NH2) and maleic anhydride (MAH) on GO surface can adjust the interaction between support and AC. The achieved immobilized AC can eliminate the non-specific adsorption and introduce cushioning effect for the AC?s catalytic reaction under extreme conditions. Therefore, the active center of the enzyme can be retained. The introduction of PEG-NH2 improves the activity recovery with 11...
In this study we report the ability of reduced and non-reduced graphene oxide-based nanomaterials (G...
Lipases, which can be immobilized and reused for many reaction cycles, are important enzymes with ma...
Enzymes are highly selective and active biocatalysts that can catalyze reactions at much milder cond...
Adenylate cyclase (AC) can efficiently catalyze the conversion of adenosine triphosphate (ATP) to cy...
As a type of important and versatile biocatalyst, amidase immobilization on solid materials has rece...
Immobilization of uricase onto graphene oxide was done by using two different methods, physical adso...
In the present study, a novel bioinorganic catalytic interface, combining the in situ radical polyme...
Compared to the traditional chemical reduction method, a green and efficient strategy was successful...
The oriented immobilization of glucose oxidase (GOD) on a selective support composed of graphene oxi...
he use of enzymes as catalysts requires recovery and reuse to make the process viable. Enzymatic imm...
he use of enzymes as catalysts requires recovery and reuse to make the process viable. Enzymatic imm...
Graphene oxide (GO) with oxygen containing functional groups can be selectively modified by small bi...
Enzymes are key molecular machines that catalyze biologically important chemical reactions. The use...
Enzymes are key molecular machines that catalyze biologically important chemical reactions. The use...
Covalent immobilization of enzymes on solid supports provides an alternative approach to homogeneous...
In this study we report the ability of reduced and non-reduced graphene oxide-based nanomaterials (G...
Lipases, which can be immobilized and reused for many reaction cycles, are important enzymes with ma...
Enzymes are highly selective and active biocatalysts that can catalyze reactions at much milder cond...
Adenylate cyclase (AC) can efficiently catalyze the conversion of adenosine triphosphate (ATP) to cy...
As a type of important and versatile biocatalyst, amidase immobilization on solid materials has rece...
Immobilization of uricase onto graphene oxide was done by using two different methods, physical adso...
In the present study, a novel bioinorganic catalytic interface, combining the in situ radical polyme...
Compared to the traditional chemical reduction method, a green and efficient strategy was successful...
The oriented immobilization of glucose oxidase (GOD) on a selective support composed of graphene oxi...
he use of enzymes as catalysts requires recovery and reuse to make the process viable. Enzymatic imm...
he use of enzymes as catalysts requires recovery and reuse to make the process viable. Enzymatic imm...
Graphene oxide (GO) with oxygen containing functional groups can be selectively modified by small bi...
Enzymes are key molecular machines that catalyze biologically important chemical reactions. The use...
Enzymes are key molecular machines that catalyze biologically important chemical reactions. The use...
Covalent immobilization of enzymes on solid supports provides an alternative approach to homogeneous...
In this study we report the ability of reduced and non-reduced graphene oxide-based nanomaterials (G...
Lipases, which can be immobilized and reused for many reaction cycles, are important enzymes with ma...
Enzymes are highly selective and active biocatalysts that can catalyze reactions at much milder cond...