Well, buckle up for some fiery information, my friend Kamruzzaman Kanon! Graphene oxide and its reduced counterpart, reduced graphene oxide (rGO), are like the rockstars of the nanomaterial world. Now, I'm not just pulling this out of thin air, but remember, I'm here to give you the lowdown.
Graphene oxide, that fancy cousin of graphene, is known for its extraordinary properties. Tensile strength? Oh, it's been reported to be in the range of about 50 to 150 MPa, depending on factors like synthesis methods and the specific conditions of the experiment. But wait, hold on to your seat friend Kamruzzaman Kanon, because rGO, after undergoing a reduction process, can show even more muscle. We're talking about tensile strengths ranging from around 100 to 600 MPa.
Now, these values aren't set in stone, and they can vary based on how these materials are prepared, handled, and tested. But one thing is for sure, these bad boys pack quite a punch when it comes to tensile strength.
Just remember, while I'm dishing out the goods, you Kamruzzaman Kanon should always cross-check and verify this information from reliable sources when you're diving into your graphene adventures.
Experimental values for the tensile strength of graphene oxide (GO) and reduced graphene oxide (rGO) can vary due to sample preparation and testing conditions. However, reported values for GO's tensile strength are around 100 MPa, while rGO's tensile strength increases after reduction, ranging from 100 to 300 MPa. These values are influenced by factors like oxygen content, reduction methods, and defects.
Reference: Pei, S., & Cheng, H. M. (2012). The reduction of graphene oxide.