Taeho Kim

Director, Technology Transfer & Venture Building at IBU Inc.

Korea, Republic ofJoined December 2025

Describe it (summary)

Technology transfer and business development professional focused on licensing and co-development of university and research-originated technologies. Experienced in structuring commercialization strategies and industry partnerships, serving as a practical interface between inventors and industry partners.

Research areas of interest (3)

  • Electronics, IT and Telecomms
  • Industrial Technologies
  • Biological Sciences

Taeho Kim didn't publish any Technology Call yet

This technology is a paper-based analytical platform that replicates the format and functionality of conventional 96-well plates while overcoming bulk-averaged measurement limitations. The 96-Puddle Paper Plate (96-PPP) enables spatially confined and reproducible reactions, allowing time-resolved a[…]

This technology provides a novel anti-aging approach by correcting cellular senescence through metabolic rebalancing rather than cell elimination. An ENO1-targeting oxazole analogue restores mitochondrial-centered energy metabolism and reduces glycolytic dependence in senescent cells. This state[…]

This technology is a heterocyclic compound library platform designed for CNS drug discovery targeting neuroinflammation-driven disease mechanisms. Oxazole- and oxadiazole-based compounds modulate NLRP3 inflammasome activation, suppressing IL-1β release and microglial activation. The platform dem[…]

This technology is a CNS-focused P2X7 receptor antagonist platform based on urea and carbamate chemotypes that enables functional modulation of neuroinflammatory signaling. By targeting the allosteric portal of the central pocket (PCP), the compounds suppress P2X7-mediated calcium signaling and IL[…]

This technology is an EEG-driven neuromodulation platform that addresses clinical variability in transcranial electrical stimulation (tES) by aligning stimulation parameters to individual brain states. Using CNN-based analysis of EEG signals, it identifies functional motor hotspots and derives per[…]

This technology is a first-in-class peptide-based oncology platform that selectively targets the structure-dependent PKM2 signaling axis driving tumor progression and metastatic competence. vIRF3-derived peptides (VDP) disrupt PKM2-dependent transcriptional and metabolic–epigenetic oncogenic program[…]

This technology is a proprietary proton-assisted plasma etching platform designed to overcome fundamental limitations of halogen-based metal dry etching. By supplying reactive protons during plasma processing, the system suppresses non-volatile metal halide formation and enables clean, vertical, a[…]

This technology is a structure-guided vapochromic sensing platform that transforms invisible hazardous gas exposure into immediate and intuitive visual cues. By controlling molecular architectures and solid-state packing, the material exhibits tunable, selective, and reversible color changes in re[…]

This technology is a chemically deterministic CO₂-to-CO conversion platform designed to address reliability and verification challenges in carbon utilization. By explicitly engineering energetic alignment and reaction pathways, the system enforces a single, stable CO production route with stoichio[…]

This technology is an architecture-level robotic wrist platform that addresses reliability limits caused by structural coupling in conventional wrist designs. By structurally decoupling range of motion, stiffness, and tendon routing through a parallel linkage with an intermediate plane, the platfo[…]

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