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Chemistry

D-Index
49
Citations
8422
World Ranking
14840
National Ranking
3789

Overview

Ivan Aprahamian is affiliated with Dartmouth College in the United States. Their research primarily focuses on materials science, with a significant emphasis on materials chemistry. The scientist's work spans several subfields, including materials chemistry, cellular and molecular neuroscience, organic chemistry, spectroscopy, and molecular biology.

The main topics covered in their research include:

  • Photochromic and fluorescence chemistry
  • Photoreceptor and optogenetics research
  • Crystallization and solubility studies
  • X-ray diffraction in crystallography
  • Luminescence and fluorescent materials
  • Molecular sensors and ion detection
  • Supramolecular self-assembly in materials

Ivan Aprahamian has a strong publication record, contributing frequently to various well-regarded scientific journals and venues. Among the most frequent publication venues are:

  • The Cambridge Structural Database
  • Journal of the American Chemical Society
  • Chem
  • Angewandte Chemie International Edition
  • Angewandte Chemie

Recent papers authored or co-authored by Ivan Aprahamian include:

  • The Future of Molecular Machines, 2020, ACS Central Science
  • Non-equilibrium Steady States in Catalysis, Molecular Motors, and Supramolecular Materials: Why Networks and Language Matter, 2023, Journal of the American Chemical Society

Frequent collaborators include Baihao Shao, Qingkai Qi, Daniil Sosnin, Heyifei Fu, and Qian-Feng Qiu. These collaborations have resulted in a substantial body of work advancing the understanding of molecular machines and related chemical phenomena.

Best Publications

  • Hydrazone-based switches, metallo-assemblies and sensors

    Xin Su;Ivan Aprahamian

  • Suppression of Kasha's rule as a mechanism for fluorescent molecular rotors and aggregation-induced emission

    Hai Qian;Morgan E. Cousins;Erik H. Horak;Audrey Wakefield

  • The Future of Molecular Machines.

    Ivan Aprahamian

  • Visible light switching of a BF2-coordinated azo compound.

    Yin Yang;Russell P. Hughes;Ivan Aprahamian

  • Isomerization mechanism in hydrazone-based rotary switches: lateral shift, rotation, or tautomerization?

    Shainaz M. Landge;Shainaz M. Landge;Ekatarina Tkatchouk;Diego Benítez;Don Antoine Lanfranchi

  • Near-Infrared Light Activated Azo-BF2 Switches

    Yin Yang;Russell P. Hughes;Ivan Aprahamian

  • Simple hydrazone building blocks for complicated functional materials.

    Luke A. Tatum;Xin Su;Ivan Aprahamian

  • Aggregation-induced emission in BF2–hydrazone (BODIHY) complexes

    Yin Yang;Xin Su;Calden N. Carroll;Ivan Aprahamian

  • New molecular switch architectures

    Jared D. Harris;Mark J. Moran;Ivan Aprahamian

  • A switching cascade of hydrazone-based rotary switches through coordination-coupled proton relays

    Debdas Ray;Justin T. Foy;Russell P. Hughes;Ivan Aprahamian

  • Photochromic Hydrazone Switches with Extremely Long Thermal Half-Lives.

    Hai Qian;Susnata Pramanik;Ivan Aprahamian

  • Hydrazone switches and things in between

    Ivan Aprahamian

  • A Liquid‐Crystalline Bistable [2]Rotaxane

    Ivan Aprahamian;Takuma Yasuda;Taichi Ikeda;Sourav Saha

  • Shape-Persistent Actuators from Hydrazone Photoswitches

    Alexander Ryabchun;Quan Li;Federico Lancia;Ivan Aprahamian

  • A pH activated configurational rotary switch: controlling the E/Z isomerization in hydrazones.

    Shainaz M. Landge;Ivan Aprahamian

  • Kinetic and Thermodynamic Approaches for the Efficient Formation of Mechanical Bonds

    William R. Dichtel;William R. Dichtel;Ognjen Š. Miljanić;Wenyu Zhang;Jason M. Spruell;Jason M. Spruell

  • A Redox-Switchable α-Cyclodextrin-Based [2]Rotaxane

    Yan Li Zhao;William R. Dichtel;William R. Dichtel;Ali Trabolsi;Sourav Saha

  • Hydrazones as New Molecular Tools

    Baihao Shao;Ivan Aprahamian

  • Functionally rigid bistable [2]rotaxanes.

    Sune Nygaard;Ken C.-F. Leung;Ivan Aprahamian;Taichi Ikeda

  • Structure Property Analysis of the Solution and Solid-State Properties of Bistable Photochromic Hydrazones.

    Baihao Shao;Hai Qian;Quan Li;Ivan Aprahamian

  • Clicked interlocked molecules

    Ivan Aprahamian;Ognjen Š Miljanić;William R. Dichtel;William R. Dichtel;Kyosuke Isoda

  • Waste management of chemically activated switches: using a photoacid to eliminate accumulation of side products.

    Luke A. Tatum;Justin T. Foy;Ivan Aprahamian

Frequent Co-Authors

J. Fraser Stoddart
J. Fraser Stoddart Northwestern University
William R. Dichtel
William R. Dichtel Northwestern University
Lawrence T. Scott
Lawrence T. Scott Boston College
Ali Trabolsi
Ali Trabolsi New York University Abu Dhabi
Amar H. Flood
Amar H. Flood Indiana University
James R. Heath
James R. Heath California Institute of Technology
Takashi Kato
Takashi Kato University of Tokyo
Takuma Yasuda
Takuma Yasuda Kyushu University
Ali Coskun
Ali Coskun University of Fribourg
Alberto Credi
Alberto Credi University of Bologna

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