搜尋

會員登入

搜尋

導覽

會員
廣告
廣告

TSMC and NCTU Work on Wafer-scale One-atom-thick Insulating Layer Technology

瀏覽次數:4300

TAIPEI, Taiwan - Under long-term support from the “Taiwan Consortium of Emergent Crystalline Materials” (TCECM) program of the Ministry of Science and Technology (MOST), Taiwan, a research team at National Chiao Tung University (NCTU) collaborated with Taiwan Semiconductor Manufacturing Company (TSMC) to form an industry-university joint research team, reporting a breakthrough in the synthesis of one-atom-thick boron nitride (BN). The joint research team successfully developed a method to synthesize wafer-scale and single-crystal BN, which may be applied toward the fabrication of advanced logic integrated circuits. This outstanding fundamental research result was published in the top journal ?Nature? in March 2020.

The semiconductor industry continues to push forward in scaling down the size of transistors to boost the efficiency of IC chips. However, silicon transistors are reaching their physical limits as it becomes difficult for electrons to travel through channels only a few nanometers thick. That is why scientists around the globe are trying to find new materials to continue transistor scaling. Two-dimensional (2D) materials, which are crystalline sheets of atoms (only approximately 0.7 nm thick) with flat surfaces free from defects, can enable electrons to flow freely through atomically thin channels.

Therefore, 2D semiconductors (such as molybdenum disulfide, MoS2) are considered promising candidates to overcome this bottleneck to transistor shrinking. While electrons can flow well in 2D semiconductors, they still need 2D insulators to prevent disturbances from adjacent materials. One atomic layer thick boron nitrides (BN), the thinnest insulator in nature, has been found to be an ideal material to block such disturbances.

However, previous approaches found it hard to synthesize high-quality, single-crystal and wafer-scale BN for practical applications. Under a joint research project led by Dr. Lain-Jong Li at TSMC and Prof. Wen-Hao Chang at NCTU, the paper lead author Dr. Tse-An Chen (TSMC) successfully identified a way to synthesize BN one atomic layer thick on a 2 inches wafer and demonstrated its usefulness in improving the performance of transistors made of 2D semiconductors. This success goes beyond technology development to explore fundamental research, finding the underlying physics of BN molecules on a copper surface, and eventually achieving the technology to form single-crystal BN on a full wafer.

Establishing a solid base of fundamental research is crucial for the future advance of the high-tech industry in Taiwan. The success of this joint research project also represents a milestone for industry-university collaboration in the research of fundamental science in Taiwan and meets the objectives of the TCECM program.

稀土棋局下的台灣解方:從供應鏈韌性看關鍵礦物合作新契機
特別企劃半導體

稀土棋局下的台灣解方:從供應鏈韌性看關鍵礦物合作新契機

稀土與關鍵礦物已成全球科技競爭與經濟安全的重要戰略資源。面對供應鏈高度集中與地緣風險升高,台灣如何透過國際合作、技術替代、戰略儲備與城市採礦,建立自主且具韌性的關鍵礦物供應體系?

稀土與關鍵礦物已成全球科技競爭與經濟安全的重要戰略資源。面對供應鏈高度集中與地緣風險升高,台灣如何透過國際合作、技術替代、戰略儲備與城市採礦,建立自主且具韌性的關鍵礦物供應體系?

關鍵字:semiconductor