“…This biochemical marker is utilized to detect AMI as it is rapidly released from the site of injury and its concentration increases within 2 hours after myocardial infarction, reaching a peak concentration after 6 -9 hrs. [13]. We used anti-myoglobin immobilized on (3-Aminopropyl)triethoxysilane (APTES) modified 3C-SiC with fluorescent microscopy to evaluate anti-myoglobin!…”
Silicon carbide (SiC) has long been known as a robust semiconductor with superior properties to silicon for electronic applications. The cubic form of SiC, known as 3C-SiC, has been researched for non-electronic applications, such as
“…This biochemical marker is utilized to detect AMI as it is rapidly released from the site of injury and its concentration increases within 2 hours after myocardial infarction, reaching a peak concentration after 6 -9 hrs. [13]. We used anti-myoglobin immobilized on (3-Aminopropyl)triethoxysilane (APTES) modified 3C-SiC with fluorescent microscopy to evaluate anti-myoglobin!…”
Silicon carbide (SiC) has long been known as a robust semiconductor with superior properties to silicon for electronic applications. The cubic form of SiC, known as 3C-SiC, has been researched for non-electronic applications, such as
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