Boston, MA, United States of America

Hongli Ni


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Hongli Ni: Pioneer in Shortwave Infrared Photothermal Microscopy

Introduction

Hongli Ni is an innovative inventor based in Boston, MA, who has made significant contributions to the field of photothermal microscopy. With a focus on advancing microscopy techniques, Ni's work stands out for its potential applications in various scientific fields, particularly in vibrational imaging.

Latest Patents

Hongli Ni holds a patent for the invention titled "Apparatus and method for shortwave infrared photothermal (SWIP) microscopy." This groundbreaking patent describes a short-wave infrared photothermal (SWIP) microscopy system and method, which generates shortwave infrared excitation light probe light. The system combines excitation light and probe light to create a focused beam directed onto a sample. This innovative approach allows for the effective generation of a SWIP signal, which is produced through absorption-induced thermo-optic selective heating of the sample. The SWIP signal is subsequently collected via a condenser aperture for detection.

Career Highlights

Ni’s academic and research career is closely tied to Boston University, where he is contributing to the advancement of scientific knowledge through both teaching and developing innovative technologies. His work on SWIP microscopy not only showcases his inventive spirit but also represents a significant step forward in microscopy precision and capability.

Collaborations

Throughout his career, Hongli Ni has collaborated with esteemed colleagues, including Ji-Xin Cheng and Yuhao Yuan. These partnerships have played a crucial role in driving forward research initiatives and enhancing the impact of their collective work in cutting-edge imaging technology.

Conclusion

Hongli Ni has established himself as a key figure in the field of photothermal microscopy through his innovative patent and collaborative efforts. The implications of his work on shortwave infrared microscopy are vast, providing new avenues for vibrational imaging in various research and practical applications. As he continues to push the boundaries of scientific discovery, Ni remains a significant influence in the world of innovations and inventions.

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