Related Experiment Video
Updated: Sep 2, 2026

Epitaxial Nanostructured α-Quartz Films on Silicon: From the Material to New Devices
Published on: October 6, 2020
Dynamic Disulfide Bond-Functionalized Self-Healing Resin Coatings for Surface Modification of Quartz Sand toward Sand
Shunming Zhou1, Ning Qi1,2, Yixin Lu1
1School of Petroleum Engineering, China University of Petroleum (East China), Qingdao, Shandong266580, China.
Abstract:
Coating failure of conventional resin-coated sand under harsh formation conditions can induce formation sand backflow, shorten the service life of sand-control systems, and ultimately impair oil and gas well productivity. In this study, a self-healing epoxy resin with a dynamically reversible disulfide-bond network was synthesized and applied as a surface coating to prepare self-healing resin-coated sand for fracture-packing sand control. The self-healing epoxy resin exhibits excellent self-healing capability, achieving up to 86.15% healing efficiency within the temperature range of 80-100 °C. The prepared SHCS exhibited high fracture conductivity, in situ self-healing capability, and sand-binding performance. Through dynamic disulfide exchange, detached SHCS particles can be recemented and self-healed, achieving a healing efficiency of up to 82.41%. Moreover, attributed to the fine-sand capture and aggregation capability of the self-healing coating, SHCS effectively controlled the sand production rate below 0.05 g/L, significantly extending the service life of sand control systems. This work demonstrates the potential of self-healing coatings for the modification of resin-coated sand and provides a promising strategy for the application of self-healing coatings in oil and gas exploitation.

