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February 16, 2026Nano Research1 citations

Giant SRS signal enhancements from near-infrared cumulenes

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XBX. BaiTDTiantian DongFHFanghao Hu

Key Points

  • To develop near-infrared cumulenes as enhanced probes for epr-SRS microscopy imaging.
  • Developed near-infrared cumulenes with computational assistance
  • Measured SRS signal enhancements relative to non-resonant cumulenes
  • Conducted organelle-specific SRS imaging in live cells
  • Achieved over 2 orders of magnitude increase in SRS signal compared to non-resonant cumulenes
  • Reached nearly 1900 times relative intensity compared to 5-ethynyl-2'-deoxyuridine
  • Demonstrated high biocompatibility of near-infrared cumulenes in live cells

Abstract

Electronic pre-resonance stimulated Raman scattering (epr-SRS) microscopy has boosted the sensitivity of vibrational imaging, which was largely relied on xanthene-based palette. Recently, cumulenes have been reported as a new set of Raman imaging probes with distinct vibrational frequencies in the range of 1900-2050 cm -1 . Here, we develop near-infrared cumulenes with computational assistance, which expand the structural diversity of epr-SRS probes. With near-infrared absorption, cumulenes exhibit giant SRS signal enhancements, achieving more than 2 orders of magnitude increase over non-resonant cumulene and reaching nearly 1900 times relative intensity versus 5-ethynyl-2'-deoxyuridine (RIE=1889), which is among the strongest reported for small molecules in the cell-silent Raman window. Furthermore, we demonstrated organelle-specific SRS imaging of near-infrared cumulene in live cells with high biocompatibility. The near-infrared cumulenes provide new direction for developing epr-SRS imaging probes and show great potential for multiplexed SRS imaging with enhanced sensitivity.

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Cite This Study

Bai et al. (2026) studied this question.

synapsesocial.com/papers/69926a620d0ce0adc9976a33https://doi.org/10.26599/nr.2026.94908576
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