Assoc Prof Dr. Dinglong Yang | Shell Development | Best Researcher Award

Assoc Prof Dr. Dinglong Yang | Shell Development | Best Researcher Award 

Assoc Prof Dr. Dinglong Yang, Yantai Institute of Coastal Zone Research Chinese Academy of Sciences, China

Yang Dinglong is an esteemed Associate Researcher and Master’s Supervisor at the Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences. Born on October 10, 1987, in Yantai, China, Dr. Yang has made significant contributions to the field of marine bioscience. He completed his doctoral studies in Marine Bioscience at the University of Chinese Academy of Sciences, graduating in 2017. Dr. Yang’s research focuses on shellfish development, the Hippo-warts-yorkie pathway, and molecular and cellular immunity in shellfish. His work has been published in notable journals such as Comparative Immunology Reports, Ecotoxicology and Environmental Safety, and Fish and Shellfish Immunology. Key publications include studies on the Hippo-warts-yorkie pathway’s role in larval survival and shell development in Pacific abalone, and the effects of deltamethrin on extracellular traps in the hemocytes of Ruditapes philippinarum.

Professional Profile:

SCOPUS

 

🎓 Education

Yang completed his Doctoral studies in Marine Bioscience at the University of Chinese Academy of Sciences from 2014 to 2017.

🧑‍🔬 Professional Experience

Since 2017, Yang has been serving as an Associate Researcher and Master’s Supervisor at the Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences. His work focuses on advancing knowledge in shellfish development and marine immunology.

📚 Research Interests

  • Shellfish Development
  • Hippo-warts-yorkie Pathway
  • Molecular and Cellular Immunity of Shellfish

📝 Notable Publications

  1. Hippo-warts-yorkie pathway is crucial for larval survival and shell development in Pacific abalone (Haliotis discus hannai). Comparative Immunology Reports, 2024(6), 200133.
  2. In vitro study of deltamethrin-induced extracellular traps in hemocytes of Ruditapes philippinarum. Ecotoxicology and Environmental Safety, 256(2023), 114909.
  3. Characteristic and antibacterial effect of a histone H2A and its preliminary roles in extracellular traps in manila clam Ruditapes philippinarum. Fish and Shellfish Immunology, 131(2022), 77-83.
  4. Antimicrobial Defensin and DNA Traps in Manila Clam Ruditapes philippinarum: Implications for Their Roles in Immune Responses. Frontiers in Marine Science, 8(2021), 690879.

🔬 Recent Scientific Research Projects

  • National Natural Science Foundation of China (No. 42176141)
  • Science & Technology Fundamental Resources Investigation Program (2022FY100600)
  • Youth Innovation Promotion Association of Chinese Academy of Sciences (No. 2022211)
  • Natural Science Fo

Publication top Notes:

Molecular characterization, expression and antibacterial function of a macin, HdMac, from Haliotis discus hannai

Interactive effects of multiple antibiotic residues and ocean acidification on physiology and metabolome of the bay scallops Argopecten irradians irradians

Intrinsic and extrinsic pathways of apoptosis induced by multiple antibiotics residues and ocean acidification in hemocytes of scallop Argopecten irradians irradians: An interactionist perspective

Effects of exposure to nanoplastics on the gill of mussels Mytilus galloprovincialis: An integrated perspective from multiple biomarkers

Effects of dietary supplementation of Clostridium butyricum H129 on growth performance and intestinal health of turbot, Scophthalmus maximus

Mr. Mohammad Ali Nasiri | Thermoelectric sensor | Best Researcher Award

Mr. Mohammad Ali Nasiri | Thermoelectric sensor | Best Researcher Award

Mr. Mohammad Ali Nasiri ,university of valencia -Instituto de Ciencia Molecular (ICMOL), Spain

Mohammad Ali Nasiri, based in Valencia, Spain, is an innovative researcher specializing in thermoelectric materials, energy storage, and sustainable solutions. With over five years of experience at the Instituto de Ciencia Molecular (ICMOL), he has made significant advancements in energy storage technologies and sustainable thermoelectric materials. Nasiri has expertise in micro/nanofabrication and extensive characterization techniques, including electron beam evaporation, thermal evaporation, and Raman spectroscopy. His notable publications include works on ultrathin transparent nickel electrodes and lignin-derived ionic conducting membranes. Nasiri holds a Master of Science in Nanotechnology from the Materials and Energy Research Center, Iran, and a Master of Science in Mechanical Engineering from Tarbiat Modares University, Iran. He is currently pursuing research in Nanoscience and Nanotechnology at the University of Valencia, focusing on thermoelectric materials. Nasiri’s work has been guided by esteemed research advisors Andres Cantarero and Clara Gomez.

Professional Profile:

ORCID

Education:

  • Researcher in Nanoscience and Nanotechnology, University of Valencia (March 2019 – Present)
  • Master of Science in Nanotechnology – Nanomaterials, Materials and Energy Research Center, Tehran, Iran (September 2014 – 2017)
  • Master of Science in Mechanical Engineering, Tarbiat Modares University, Tehran, Iran (November 2006 – 2009)

Languages:

  • English (B1), Persian (Native) 🗣️📚

Research Interests:

  • Hydrogel bioelectronics
  • Thermal conductivity on flakes
  • Ionic thermometric materials 🌊🌡️

Professional Experience:

  • Researcher Assistant at Instituto de Ciencia Molecular (ICMOL) (March 2019 – Present)
    • Developed sensors for 3ω method thermal conductivity characterization.
    • Created lignin-based MWCNT/MXene multilayered electrodes for energy storage.
    • Pioneered sustainable innovations in thermoelectric materials, including lignin-derived ionic conducting membranes and hydrogels.
    • Advanced techniques in transparent thermoelectric materials, including ultrathin transparent nickel electrodes and selective light absorbers. 🌞🧪

Skills:

  • Cleanroom Class 10000: Expert in micro and nanofabrication techniques such as electron beam evaporation, thermal evaporation, sputtering, ellipsometry, dry etching, and wire bonding. 🏭🔧
  • Characterization Techniques: Proficient in thermoelectric and thermal conductivity measurements, Hall effect, Raman, FTIR, UV-Vis, XPS, Kerr electro-optic effect, and SThM. 📊🔍
  • Mathematical Modeling and Problem Solving: Specializes in ionic thermoelectric materials and metamaterials using finite element method (FEM) and perturbation method. 📐🧩

Publication top Notes:

Highly-efficient sustainable ionic thermoelectric materials using lignin-derived hydrogels

Synthesis of PEDOT/CNTs Thermoelectric Thin Films with a High Power Factor

Lignin‐Derived Ionic Conducting Membranes for Low‐Grade Thermal Energy Harvesting

Ultrathin Transparent Nickel Electrodes for Thermoelectric Applications

Textile‐based Thermoelectric Generator Produced Via Electrochemical Polymerization

Elevated temperature annealed α-Fe<inf>2</inf>O<inf>3</inf>/reduced graphene oxide nanocomposite photoanode for photoelectrochemical water oxidation